MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Kawauchi, Akihisa
Uchida, Koji
Kono, Hiroyuki
Tamura, So
Abrégé
A vehicle vibration control system includes: a buffer mechanism that is disposed between a wheel and a vehicle body and capable of adjusting buffer performance as a function of reducing vibration input to the vehicle body from the wheel; a weight detection unit that detects the weight of the vehicle body; a traveling position detection unit that detects the traveling position of the vehicle body; and a control device that controls the buffer performance of the buffer mechanism. The control device acquires a driving pattern in which the traveling position of the vehicle body and the buffer performance were set, on the basis of the weight of the vehicle body, and controls the buffer performance of the buffer mechanism on the basis of the acquired driving pattern and a result detected in the traveling position detection unit.
B61F 5/24 - Moyens pour amortir ou minimiser les mouvements de roulis, lacet, galop ou tangage des châssis
B60G 17/016 - Suspensions élastiques permettant d'ajuster les caractéristiques des ressorts ou des amortisseurs de vibrations, de réguler la distance entre la surface porteuse et la partie suspendue du véhicule ou de bloquer la suspension pendant l'utilisation pour s'adapter aux conditions variables du véhicule ou du terrain, p. ex. en fonction de la vitesse ou de la charge les moyens de régulation comportant des éléments électriques ou électroniques caractérisés par leur réponse à un mouvement ou une condition donnés ou à l'action du conducteur, lors du déplacement du véhicule
B60G 17/0165 - Suspensions élastiques permettant d'ajuster les caractéristiques des ressorts ou des amortisseurs de vibrations, de réguler la distance entre la surface porteuse et la partie suspendue du véhicule ou de bloquer la suspension pendant l'utilisation pour s'adapter aux conditions variables du véhicule ou du terrain, p. ex. en fonction de la vitesse ou de la charge les moyens de régulation comportant des éléments électriques ou électroniques caractérisés par leur réponse à un mouvement ou une condition donnés ou à l'action du conducteur, lors du déplacement du véhicule à une condition externe, p. ex. un mauvais état de la route, un vent latéral
B60G 17/08 - Suspensions élastiques permettant d'ajuster les caractéristiques des ressorts ou des amortisseurs de vibrations, de réguler la distance entre la surface porteuse et la partie suspendue du véhicule ou de bloquer la suspension pendant l'utilisation pour s'adapter aux conditions variables du véhicule ou du terrain, p. ex. en fonction de la vitesse ou de la charge les caractéristiques des amortisseurs à fluide
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Yoshida, Kaori
Tachibana, Shinya
Katsume, Tadashi
Yonekawa, Takahito
Abrégé
This carbon dioxide recovery system is provided with: a distillation column for heating an absorption solution having carbon dioxide absorbed therein to cause the carbon dioxide to be released from the absorption solution; a first reboiler that causes heat exchange to occur between a heating medium and the absorption solution extracted from the distillation column; a methanation device that includes a reactor for producing methane by causing a reaction between carbon dioxide and hydrogen; a reaction gas supply line for supplying the reaction gas flowed out from the reactor, to the first reboiler, as a heating medium; and a reaction gas return line for returning, to the methanation device, the reaction gas that had exchanged heat with the absorption solution in the first reboiler.
C07C 1/12 - Préparation d'hydrocarbures à partir d'un ou plusieurs composés, aucun d'eux n'étant un hydrocarbure à partir d'oxydes de carbone à partir d'anhydride carbonique avec de l'hydrogène
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Tachibana, Shinya
Katsume, Tadashi
Yoshida, Kaori
Yonekawa, Takahito
Abrégé
A carbon dioxide recovery system including a first distillation tower, in which an absorption liquid containing absorbed carbon dioxide is heated and thereby caused to release the carbon dioxide, a first reboiler, in which some of the absorption liquid drawn out of the first distillation tower is heat-exchanged with steam, a second reboiler, in which some of the absorption liquid drawn out of the first distillation tower is heat-exchanged with a fluid which is neither an effluent gas from the first distillation tower nor steam, and a first compressor, whereby the fluid is compressed before flowing into the second reboiler.
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Furuichi, Hiroyuki
Yamamoto, Satoshi
Komada, So
Katsume, Tadashi
Yoshida, Kaori
Abrégé
A hydrogen supply system comprising: a hydrogen production device; a hydrogen flow line through which hydrogen produced by the hydrogen production device flows; a buffer tank provided in the hydrogen flow line on the downstream side of the hydrogen production device; a bypass line which bypasses a part of the hydrogen flow line and which has a downstream end portion communicating with the hydrogen flow line on the downstream side of the buffer tank; and a storage tank which is provided in the bypass line and which can store hydrogen.
F17C 5/06 - Procédés ou appareils pour remplir des récipients sous pression de gaz liquéfiés, solidifiés ou comprimés pour le remplissage avec des gaz comprimés
C01B 3/00 - HydrogèneMélanges gazeux contenant de l'hydrogèneSéparation de l'hydrogène à partir de mélanges en contenantPurification de l'hydrogène
C01B 3/38 - Production d'hydrogène ou de mélanges gazeux contenant de l'hydrogène par réaction de composés organiques gazeux ou liquides avec des agents gazéifiants, p. ex. de l'eau, du gaz carbonique, de l'air par réaction d'hydrocarbures avec des agents gazéifiants avec des catalyseurs
F02M 21/02 - Appareils pour alimenter les moteurs en combustibles non liquides, p. ex. en combustibles gazeux stockés sous forme liquide en combustibles gazeux
5.
COMPOSITE AMINE ABSORBING LIQUID, REMOVAL APPARATUS, AND REMOVAL METHOD
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
THE KANSAI ELECTRIC POWER CO., INC. (Japon)
Inventeur(s)
Tanaka, Hiroshi
Hirata, Takuya
Tsujiuchi, Tatsuya
Sugiura, Takuya
Kamijo, Takashi
Noborisato, Tomoki
Abrégé
222S in a gas, and contains (a) a chain-like monoamine, (b) a diamine including amino groups having the same grade, (c) a chain-like diamine including amino groups having different grades, and (d) water.
C07C 215/08 - Composés contenant des groupes amino et hydroxy liés au même squelette carboné ayant des groupes hydroxy et des groupes amino liés à des atomes de carbone acycliques du même squelette carboné le squelette carboné étant saturé et acyclique avec un seul groupe hydroxy et un seul groupe amino liés au squelette carboné
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Shoda, Katsuhiko
Otaka, Kazuma
Nishiura, Kensuke
Sasaki, Masashi
Abrégé
A transmission according to at least one embodiment of the present disclosure comprises a motive power transmission element having integrally formed therein: a first planetary roller that internally contacts with a first inscribed roller; and a second planetary roller that has a second outer diameter different from a first outer diameter of the first planetary roller and that internally contacts with a second inscribed roller, or a planetary gear having a pitch circle diameter different from the first outer diameter and meshing with an inner gear.
F16H 13/08 - Transmissions pour transmettre un mouvement rotatif à rapport de vitesse constant par friction entre des organes rotatifs avec organes à mouvement orbital avec billes ou rouleaux agissant de manière analogue
F16H 1/28 - Transmissions à engrenages pour transmettre un mouvement rotatif avec engrenages à mouvement orbital
7.
CHARGING PROCESSING DEVICE, VEHICLE, CHARGING PROCESSING METHOD, AND PROGRAM
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Tachibana Shinya
Katsume Tadashi
Kondo Kazuumi
Abrégé
This charging processing device comprises: a first reception processing unit which receives, from a wireless communication device installed in a vehicle, first information including identification information about the wireless communication device and information indicating that a human has been detected; a second reception processing unit which receives, from a mobile terminal device possessed by a user, second information including the identification information about the wireless communication device, identification information about the mobile terminal device, and location information about the mobile terminal device; a determination processing unit which determines, on the basis of the received first information and second information, getting on or off the vehicle by the user who has the mobile terminal device; and a charging processing unit which performs charging processing on the user on the basis of the determination result of getting on or off the vehicle.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Katahira Kousuke
Masukawa Masahisa
Abrégé
This branching device has: a first main line movable guide and a second main line movable guide that are configured to be movable between a main line guide position where a vehicle can be guided from a first main line track to a second main line track and a main line retraction position where the vehicle cannot be guided from the first main line track to the second main line track; a first branch movable guide and a second branch movable guide which are configured to be movable between a branch guide position where the vehicle can be guided from the first main line track to a branch track and a branch retraction position where the vehicle cannot be guided from the first main line track to the branch track; and movable equipment which causes the first main line movable guide, the second main line movable guide, the first branch movable guide, and the second branch movable guide to be movable.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
MITSUBISHI GAS CHEMICAL COMPANY, INC. (Japon)
Inventeur(s)
Marushima Shinya
Irie Kenichi
Kamo Takahiro
Tanioka Tadateru
Ando Yoshimasa
Tsutsumi Atsushi
Abrégé
The present invention provides a production system for producing a hydrocarbon compound, the system being capable of controlling the effect of reducing the burden on the environment derived from the starting materials. This system for producing a hydrocarbon compound is characterized by comprising: a hydrogen production device for generating hydrogen; a carbon dioxide supply device for supplying carbon dioxide; and a hydrocarbon compound production device for generating a hydrocarbon compound from the hydrogen generated by the hydrogen production device and the carbon dioxide supplied from the carbon dioxide supply device. This system for producing a hydrocarbon compound is also characterized in that the level of the burden on the environment of the hydrocarbon compound, which has been generated by the hydrocarbon compound production device, is classified according to the environmental indicator of at least one of the hydrogen generated by the hydrogen production device and the carbon dioxide supplied from the carbon dioxide supply device.
C07C 1/12 - Préparation d'hydrocarbures à partir d'un ou plusieurs composés, aucun d'eux n'étant un hydrocarbure à partir d'oxydes de carbone à partir d'anhydride carbonique avec de l'hydrogène
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Kawauchi Akihisa
Uchida Koji
Murase Kosaku
Abrégé
An acceleration monitoring device that comprises: an acquisition unit that acquires measured acceleration waveforms, being acceleration waveforms measured by a vehicle that is traveling a trajectory; a storage unit that stores a reference acceleration waveform, being an acceleration waveform that serves as a reference for measured acceleration waveforms for a predetermined area of interest that is part of the trajectory; and a monitoring unit that monitors the acceleration values for non-linear expanded/contracted and measured acceleration waveforms, being acceleration waveforms made to correspond to the reference acceleration waveform by non-linearly expanding and contracting the time axis for measured acceleration waveforms.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
MITSUBISHI HEAVY INDUSTRIES, LTD. (Japon)
Inventeur(s)
Sakaguchi, Masakazu
Tachibana, Shinya
Furuichi, Hiroyuki
Yonekawa, Takahito
Oda, Erika
Ishii, Hiromi
Abrégé
The purpose of the present invention is to provide an ammonia decomposition apparatus capable of suppressing nitridation of a material in a reactor in which ammonia is decomposed. This ammonia decomposition apparatus is provided with: a reactor filled with a catalyst for decomposing ammonia as a raw material into hydrogen and nitrogen; and a diluent gas supply line for supplying a diluent gas to mix the raw material with the diluent gas having a lower ammonia concentration than the raw material before the raw material flows to the catalyst.
C01B 3/04 - Production d'hydrogène ou de mélanges gazeux contenant de l'hydrogène par décomposition de composés inorganiques, p. ex. de l'ammoniac
B01J 8/02 - Procédés chimiques ou physiques en général, conduits en présence de fluides et de particules solidesAppareillage pour de tels procédés avec des particules immobiles, p. ex. dans des lits fixes
MITSUBSHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Tsutsumi, Atsushi
Tanaka, Tetsuya
Nagafuchi, Naoyuki
Kamijo, Takashi
Abrégé
A gas turbine plant includes a gas turbine, an exhaust line, an exhaust heat recovery boiler that generates steam due to heat of exhaust gas and guides the exhaust gas to the exhaust line, a carbon dioxide recovery device that recovers carbon dioxide contained in the exhaust gas, a heat exchanger that cools the exhaust gas to a temperature set in advance, and a circulation line that branches from a position between the carbon dioxide recovery device and the heat exchanger and is connected to an inlet of the gas turbine. The carbon dioxide recovery device has an absorption tower that absorbs carbon dioxide contained in the exhaust gas by causing the exhaust gas at the set temperature and an absorption liquid to come into contact with each other. The heat exchanger is formed of a material having higher corrosion resistance than a material forming the exhaust heat recovery boiler.
F01K 23/10 - Ensembles fonctionnels caractérisés par plus d'une machine motrice fournissant de l'énergie à l'extérieur de l'ensemble, ces machines motrices étant entraînées par des fluides différents les cycles de ces machines motrices étant couplés thermiquement la chaleur de combustion provenant de l'un des cycles chauffant le fluide dans un autre cycle le fluide à la sortie de l'un des cycles chauffant le fluide dans un autre cycle
F02C 3/34 - Ensembles fonctionnels de turbines à gaz caractérisés par l'utilisation de produits de combustion comme fluide de travail avec recyclage d'une partie du fluide de travail, c.-à-d. cycles semi-fermés comportant des produits de combustion dans la partie fermée du cycle
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Sakaguchi, Masakazu
Tachibana, Shinya
Abrégé
An ammonia decomposition apparatus comprising: a reactor that is loaded with a catalyst for a decomposition reaction for breaking down ammonia, which is a material, into hydrogen and nitrogen; and a dilute gas supply line for, before the material flows to the catalyst, supplying a diluted gas in which the concentration of ammonia is lower than that of the material, such that the diluted gas and the material are mixed, wherein the inner surface of the reactor is covered with a refractory material, the catalyst is loaded on the opposite side of the inner surface with respect to the refractory material, and a heating device for increasing the temperature of the diluted gas is provided to the diluted gas supply line.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Sakaguchi, Masakazu
Tachibana, Shinya
Abrégé
The purpose of the present invention is to provide an ammonia decomposition device with which the nitration of a material in a reactor in which ammonia decomposition is performed can be suppressed. An ammonia decomposition device according to the present invention comprises: a reactor that is filled with a catalyst for a decomposition reaction for decomposing ammonia, which is a raw material, into hydrogen and nitrogen; a diluent gas supply line for supplying a diluent gas so as to mix the raw material with the diluent gas having a lower ammonia concentration than the raw material before the raw material flows into the catalyst; and an ammonia combustor that combusts part of ammonia, wherein the reactor includes a catalyst housing part which houses a catalyst, the inside of the reactor is partitioned into a first chamber to which the raw material is supplied, and a second chamber provided downstream of the first chamber in the raw material flow direction, the catalyst housing part is provided so as to extend in the second chamber while communicating with each of the first chamber and the second chamber, an outflow gas line, which causes crude decomposition gas, produced from the raw material through the decomposition reaction as outflow gas, to flow out of the reactor and then causes the crude decomposition gas to flow, communicates with the second chamber on the upstream side from a communication part where the catalyst housing part communicates with the second chamber, and combustion gas from the ammonia combustor is supplied to the second chamber.
C01B 3/04 - Production d'hydrogène ou de mélanges gazeux contenant de l'hydrogène par décomposition de composés inorganiques, p. ex. de l'ammoniac
B01J 8/02 - Procédés chimiques ou physiques en général, conduits en présence de fluides et de particules solidesAppareillage pour de tels procédés avec des particules immobiles, p. ex. dans des lits fixes
15.
ANALYSIS SYSTEM AND MANAGEMENT SYSTEM, ANALYSIS METHOD, AND ANALYSIS PROGRAM
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Chiyomaru Masaru
Kishimoto Shinya
Tsujiuchi Tatsuya
Hirata Takuya
Abrégé
The purpose of the present invention is to provide an analysis system and a management system, an analysis method, and an analysis program which enable accurate analysis of a sample containing soluble iron. An analysis system (40) comprises: a collection unit (41) that collects soluble iron contained in a sample; a reaction unit (44) that produces a reaction solution; a detection unit (45) that detects the absorbance of the reaction solution; and a control device (50) that supplies the soluble iron collected in the collection unit (41) and a reagent to the reaction unit (44).
G01N 31/00 - Recherche ou analyse des matériaux non biologiques par l'emploi des procédés chimiques spécifiés dans les sous-groupesAppareils spécialement adaptés à de tels procédés
G01N 1/00 - ÉchantillonnagePréparation des éprouvettes pour la recherche
G01N 1/10 - Dispositifs pour prélever des échantillons à l'état liquide ou fluide
G01N 33/00 - Recherche ou analyse des matériaux par des méthodes spécifiques non couvertes par les groupes
G01N 21/77 - Systèmes dans lesquels le matériau est soumis à une réaction chimique, le progrès ou le résultat de la réaction étant analysé en observant l'effet sur un réactif chimique
G01N 21/78 - Systèmes dans lesquels le matériau est soumis à une réaction chimique, le progrès ou le résultat de la réaction étant analysé en observant l'effet sur un réactif chimique produisant un changement de couleur
16.
WET-TYPE AMMONIA CLEANING APPARATUS AND FERTILIZER PRODUCTION PLANT PROVIDED WITH SAID WET-TYPE AMMONIA CLEANING APPARATUS
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Yoshitoku, Koichiro
Senba, Noriaki
Tanaka, Yukio
Yukumoto, Atsuhiro
Yonekawa, Takahito
Fukuzawa, Shinya
Otani, Tomohiro
Isogai, Kohei
Abrégé
A wet-type ammonia cleaning apparatus for treating a basic gas containing ammonia, the apparatus comprising: an ammonia scrubber that causes gas-liquid contact between the basic gas and an absorption liquid containing carbon dioxide; and fine bubble generating devices for producing the absorption liquid from carbon dioxide and water, wherein the fine bubble generating devices include at least a first fine bubble generating device for producing a first absorption liquid from carbon dioxide and water, and a second fine bubble generating device for producing an absorption liquid from carbon dioxide and the first absorption liquid.
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
C05C 9/00 - Engrais contenant de l'urée ou ses composés
B01F 3/04 - Mélange, p.ex. dispersion, émulsion, selon les phases à mélanger de gaz ou de vapeurs avec des liquides
17.
POSITIONING CONFIGURATION DESIGN DEVICE, POSITIONING CONFIGURATION DESIGN METHOD, AND PROGRAM
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Okazaki Hirotaka
Onishi Kyotaro
Abrégé
This positioning configuration design device comprises: a positioning configuration setting unit that deletes facilities that can be deleted from facilities positioned in each of a plurality of positions, and sets a positioning configuration for each facility; a feasibility confirmation unit that determines whether a prescribed condition is feasible in the set positioning configuration of each facility; a deletion candidate list update unit that registers, in a deletion candidate list, information about the deleted facilities in a positioning configuration for which the condition is feasible; a non-deletable list update unit that registers, in a non-deletable list, information about the deleted facilities in the positioning configuration for which the condition is not feasible; and a control unit that repeatedly performs a confirmation process, including the setting of the positioning configuration and the determination of the feasibility of the condition, while increasing the number of facilities to be deleted one at a time, until a positioning configuration can be calculated for which the condition is feasible and no more facilities can be deleted.
B61L 27/00 - Systèmes centraux de commande du trafic ferroviaireCommande côté voieSystèmes de communication spécialement adaptés à cet effet
H02J 3/00 - Circuits pour réseaux principaux ou de distribution, à courant alternatif
B60M 3/02 - Fourniture d'énergie aux lignes de courant d'alimentation en contact avec le collecteur porté par le véhiculeAbsorption de l'énergie de récupération avec moyens pour maintenir le voltage dans des limites prédéterminées
18.
VERIFICATION PROCESSING DEVICE, VERIFICATION PROCESSING METHOD, AND PROGRAM
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Hirayama Keita
Takao Kenji
Masumori Kenta
Abrégé
This verification processing device is provided with: an inspection unit that performs model inspection on an inspection target model including a plurality of elements; a selection unit that selects at least one of the plurality of elements included in a counterexample outputted as a result of the model inspection; and an exclusion history generation unit that generates exclusion history information indicating an exclusion frequency for each of the plurality of elements. The inspection unit further performs another model inspection on the inspection target model obtained by excluding the selected element. When another counterexample has been outputted as a result of another model inspection, the exclusion history generation unit increases the exclusion frequency of the selected element and updates the exclusion history information. The selection unit selects an element that is high in the exclusion frequency, on the basis of the exclusion history information.
G06F 11/22 - Détection ou localisation du matériel d'ordinateur défectueux en effectuant des tests pendant les opérations d'attente ou pendant les temps morts, p. ex. essais de mise en route
G06F 11/36 - Prévention d'erreurs par analyse, par débogage ou par test de logiciel
G01R 31/00 - Dispositions pour tester les propriétés électriquesDispositions pour la localisation des pannes électriquesDispositions pour tests électriques caractérisées par ce qui est testé, non prévues ailleurs
G01R 31/50 - Test d’appareils, de lignes, de câbles ou de composants électriques pour y déceler la présence de courts-circuits, de continuité, de fuites de courant ou de connexions incorrectes de lignes
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Uchida, Koji
Kono, Hiroyuki
Mitake, Masaya
Tamura, So
Abrégé
This carriage and vehicle is provided with: a carriage body; a pair of travel wheels disposed on both sides of the carriage body in a direction intersecting with the traveling direction and capable of rolling motion on the traveling road surface of a track; a guide device guided along a guide rail and rotatably supported to the carriage body about the axial line along a vertical direction; and a pair of motors disposed between the pair of travel wheels of the carriage body and transferring a drive force to the pair of travel wheels.
B60L 15/20 - Procédés, circuits ou dispositifs pour commander la propulsion des véhicules à traction électrique, p. ex. commande de la vitesse des moteurs de traction en vue de réaliser des performances désiréesAdaptation sur les véhicules à traction électrique de l'installation de commande à distance à partir d'un endroit fixe, de différents endroits du véhicule ou de différents véhicules d'un même train pour la commande du véhicule ou de son moteur en vue de réaliser des performances désirées, p. ex. vitesse, couple, variation programmée de la vitesse
B61C 9/46 - Systèmes de transmission des locomotives ou des automotrices pour propulsion par moteur électrique avec moteurs intégrés aux roues
B61F 5/38 - Aménagements ou dispositifs pour ajuster ou pour permettre l'auto-ajustement des roues des essieux ou des bogies dans les courbes, p. ex. essieux à jeu transversal, essieux oscillants
H02P 5/46 - Dispositions spécialement adaptées à la régulation ou la commande de la vitesse ou du couple d’au moins deux moteurs électriques pour la régulation de vitesse de plusieurs moteurs dynamo-électriques en relation les uns avec les autres
B60K 17/12 - Agencement ou montage des transmissions sur les véhicules caractérisées par la disposition, l'emplacement ou le type de mécanisme de transmission électrique
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Miyamoto, Osamu
Kamijo, Takashi
Kishimoto, Shinya
Abrégé
This carbon dioxide capturing device comprises: a waste gas cooling unit for bringing waste gas cooling water into contact with a waste gas to cool the waste gas; a circulating flow path through which the waste gas cooling water that has cooled the waste gas and condensed water that is generated as the result of the cooling of the waste gas are returned to the waste gas cooling unit; an absorption unit which comprises a carbon dioxide absorption unit for bringing the waste gas that has been cooled in the waste gas cooling unit into contact with an absorption solution to allow carbon dioxide contained in the waste gas to be absorbed by the absorption solution and a waste gas water-washing unit for bringing the waste gas from which carbon dioxide has been absorbed in the carbon dioxide absorption unit into contact with waste gas washing water to wash the waste gas with water; a regeneration unit for removing carbon dioxide from the absorption solution which has absorbed carbon dioxide in the absorption unit; a feeding flow path through which circulating water that circulates through the waste gas cooling unit and the circulating flow path is introduced as the waste gas washing water to the waste gas water-washing unit; and a discharging flow path through which the circulating water that circulates through the waste gas cooling unit and the circulating flow path is discharged to the outside of the system.
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
B01D 53/78 - Procédés en phase liquide avec un contact gaz-liquide
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Kawauchi, Akihisa
Uchida, Koji
Kono, Hiroyuki
Tamura, So
Abrégé
A traction-force transmission device according to the present invention includes a pin, a traction link having a pin hole into which the pin can be fitted, and a plurality of intermediate layers provided between the outer circumferential surface of the pin and the inner circumferential surface of the pin hole. The plurality of intermediate layers include a first layer having a first spring constant and a second layer having a second spring constant that is lower than the first spring constant.
B61F 5/02 - Aménagements permettant de limiter les mouvements transversaux relatifs entre le châssis du véhicule ou la traverse danseuse et le bogieLiaisons entre châssis et bogies
F16F 5/00 - Ressorts à liquide dans lesquels le liquide travaille comme un ressort par compression, p. ex. combinés avec une action d'étranglementCombinaisons de dispositifs comportant des ressorts à liquide
F16F 1/387 - Ressorts en matière plastique, p. ex. en caoutchoucRessorts faits d'un matériau à friction intérieure élevée avec manchon de matériau élastique entre un manchon extérieur rigide et un étui intérieur rigide ou une broche comprenant des moyens pour modifier la rigidité dans certaines directions
F16F 15/023 - Suppression des vibrations dans les systèmes non rotatifs, p. ex. dans des systèmes alternatifsSuppression des vibrations dans les systèmes rotatifs par l'utilisation d'organes ne se déplaçant pas avec le système rotatif utilisant des moyens fluides
F16F 15/08 - Suppression des vibrations dans les systèmes non rotatifs, p. ex. dans des systèmes alternatifsSuppression des vibrations dans les systèmes rotatifs par l'utilisation d'organes ne se déplaçant pas avec le système rotatif utilisant des moyens élastiques avec ressorts en caoutchouc
23.
DIAGNOSTIC SYSTEM FOR OPENING/CLOSING DEVICE, AND DIAGNOSTIC METHOD
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Kondo, Kazuumi
Hoshi, Mitsuaki
Shinoki, Fujio
Murase, Kosaku
Abrégé
This diagnostic system diagnoses the soundness of an opening/closing device that can open and close by driving a motor. A driving current acquisition unit acquires the driving current of the motor. A diagnostic unit: identifies a current waveform using the temporal changes of the driving current acquired by the driving current acquisition unit; and diagnoses the soundness of the opening/closing device on the basis of the current waveform.
B61B 1/02 - Aménagement général des gares et des quais y compris les dispositifs de protection des voyageurs
E05F 15/41 - Détection par contrôle de la force ou du couple transmisAccouplements de sécurité avec activation en fonction du couple ou de la force, p. ex. accouplements glissants
E05F 15/643 - Mécanismes pour battants mus par une force motrice utilisant des actionneurs électriques utilisant des électromoteurs rotatifs pour battants à coulissement horizontal manœuvrés par des éléments de traction allongés souples, p. ex. des bandes, des chaînes ou des câbles
24.
VEHICLE VIBRATION CONTROL SYSTEM, VEHICLE VIBRATION CONTROL METHOD, AND VEHICLE VIBRATION CONTROL PROGRAM
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Kawauchi, Akihisa
Uchida, Koji
Kono, Hiroyuki
Tamura, So
Abrégé
The purpose of the present invention is to reduce vibration of a vehicle body more suitably with a simple configuration. This vehicle vibration control system includes: a buffer mechanism that is disposed between a wheel and a vehicle body and capable of adjusting buffer performance as a function of reducing vibration input to the vehicle body from the wheel; a weight detection unit that detects the weight of the vehicle body; a traveling position detection unit that detects the traveling position of the vehicle body; and a control device that controls the buffer performance of the buffer mechanism. The control device acquires a driving pattern in which the traveling position of the vehicle body and the buffer performance were set, on the basis of the weight of the vehicle body, and controls the buffer performance of the buffer mechanism on the basis of the acquired driving pattern and a result detected in the traveling position detection unit.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Kamijo Takashi
Tsutsumi Atsushi
Ishii Hiromi
Araya Takahiro
Tanaka Tetsuya
Tsujii Kazunori
Nagafuchi Naoyuki
Abrégé
This exhaust gas processing equipment is provided with an exhaust line through which exhaust gas discharged from a boiler circulates, a carbon dioxide recovering device for recovering carbon dioxide included in the exhaust gas, and an exhaust gas heating device provided downstream of the carbon dioxide recovering device to heat the exhaust gas. The carbon dioxide recovering device includes a first medium line through which a first medium circulates, and a second medium line through which a second medium higher in temperature than the first medium circulates. The exhaust gas heating device includes a first heating unit for heating the exhaust gas by means of heat exchange with the first medium, and a second heating unit for heating the exhaust gas that has passed through the first heating unit even more by heat exchange with the second medium.
F02C 3/34 - Ensembles fonctionnels de turbines à gaz caractérisés par l'utilisation de produits de combustion comme fluide de travail avec recyclage d'une partie du fluide de travail, c.-à-d. cycles semi-fermés comportant des produits de combustion dans la partie fermée du cycle
F01K 27/00 - Ensembles fonctionnels transformant la chaleur ou l'énergie d'un fluide en énergie mécanique, non prévus ailleurs
F02C 6/00 - Ensembles fonctionnels multiples de turbines à gazCombinaisons d'ensembles fonctionnels de turbines à gaz avec d'autres appareilsAdaptations d'ensembles fonctionnels de turbines à gaz à des applications particulières
F02C 6/18 - Utilisation de la chaleur perdue dans les ensembles fonctionnels de turbines à gaz à l'extérieur des ensembles eux-mêmes, p. ex. ensembles fonctionnels de chauffage à turbine à gaz
F02C 7/00 - Caractéristiques, parties constitutives, détails ou accessoires non couverts dans, ou d'un intérêt plus général que, les groupes Entrées d'air pour ensembles fonctionnels de propulsion par réaction
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Tsutsumi Atsushi
Ishii Hiromi
Tanaka Tetsuya
Nagafuchi Naoyuki
Kamijo Takashi
Abrégé
Provided is a boiler plant including a carbon dioxide removal facility. The carbon dioxide removal facility has an absorbing-liquid regeneration device and an absorption device. The absorbing-liquid regeneration device has: a regeneration tower; a first circulation line in which an absorbing liquid is taken out from the regeneration tower and is returned to the regeneration tower; a second circulation line in which the absorbing liquid is taken out from the regeneration tower and is returned to the regeneration tower; a heat exchanger; a heater; and a switcher. The heat exchanger heats the absorbing liquid through heat exchange between the absorbing liquid flowing in the first circulation line and steam from a boiler. The heater heats the absorbing liquid flowing in the second circulation line. The switcher switches between a first heating state in which the absorbing liquid is made to flow in the first circulation line and a second heating state in which the absorbing liquid is made to flow in the second circulation line.
F23J 15/00 - Aménagement des dispositifs de traitement de fumées ou de vapeurs
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
B01D 53/78 - Procédés en phase liquide avec un contact gaz-liquide
B01D 53/96 - Régénération, réactivation ou recyclage des réactifs
F01K 23/10 - Ensembles fonctionnels caractérisés par plus d'une machine motrice fournissant de l'énergie à l'extérieur de l'ensemble, ces machines motrices étant entraînées par des fluides différents les cycles de ces machines motrices étant couplés thermiquement la chaleur de combustion provenant de l'un des cycles chauffant le fluide dans un autre cycle le fluide à la sortie de l'un des cycles chauffant le fluide dans un autre cycle
F02G 5/02 - Utilisation de la chaleur perdue dans les gaz d'échappement
27.
WATER REMOVING DEVICE, WATER REMOVING COMPRESSION SYSTEM, CO2 RECOVERY SYSTEM, AND METHOD FOR CONTROLLING WATER REMOVING DEVICE
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Miyamoto, Osamu
Inui, Masayuki
Yonekawa, Takahito
Abrégé
A water removing device (60) for removing moisture from process gas that has been compressed by a compressor is provided with an absorption tower (62) in which moisture is absorbed by a dehydrating agent, a distillation tower (72) which separates the moisture from the dehydrating agent, a conveying line which conveys the dehydrating agent from the absorption tower (62) to the distillation tower (72), a dehydrating agent conveying pump (73), a bypass line linking the conveying line on the upstream side and the downstream side of the dehydrating agent conveying pump (73), a first open/closed valve (75) disposed in the bypass line, and a control device (90), wherein the control device (90) performs control to close the first open/closed valve (75) and operate the conveying pump (73) if the pressure detected by a pressure sensor (69) is lower than a first prescribed pressure, and performs control to open the first open/closed valve (75) and stop the conveying pump (73) if the pressure detected by the pressure sensor (69) is equal to or greater than the first prescribed pressure.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Inui, Masayuki
Abrégé
This method for fixing carbon dioxide comprises: a step for preparing a calcium-containing substance containing calcium; a step for preparing a calcium extraction substance which extracts calcium ions from the calcium-containing substance through a reaction with the calcium-containing substance to produce a calcium-containing intermediate; a step for mixing the calcium-containing substance with the calcium extraction substance to produce a gel containing the calcium-containing intermediate; a step for supplying a basic substance and carbon dioxide to the gel containing the calcium-containing intermediate, and causing sparingly soluble calcium carbonate to be precipitated; and a step for removing the precipitated calcium carbonate.
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
29.
METHANOL PRODUCTION FACILITY AND METHANOL PRODUCTION METHOD
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Tachibana, Shinya
Kamada, Toru
Yoshida, Kaori
Abrégé
A methanol production facility according to the present invention, said facility synthesizing methanol with use, as a starting material, of a synthesis gas that contains at least carbon dioxide and hydrogen, is provided with: a synthesis gas supply line for supplying the synthesis gas to the methanol production facility; a first synthesis reactor which is a water-cooled reactor that is connected to the synthesis gas supply line, and in which methanol is synthesized using the synthesis gas as a starting material; an outflow gas flow line in which an outflow gas containing the methanol synthesized in the first synthesis reactor and an unreacted gas that has not been used for the synthesis reaction of methanol flows after being discharged from the first synthesis reactor; a second synthesis reactor which is a gas-cooled reactor that is connected to the outflow gas flow line, and in which methanol is synthesized using, as a starting material, the unreacted gas in the outflow gas; and a bypass line for supplying some of the synthesis gas flowing through the synthesis gas supply line to the outflow gas flow line.
C07C 29/152 - Préparation de composés comportant des groupes hydroxyle ou O-métal liés à un atome de carbone ne faisant pas partie d'un cycle aromatique à six chaînons par réduction exclusivement des oxydes de carbone avec de l'hydrogène ou des gaz contenant de l'hydrogène caractérisée par le réacteur utilisé
C07C 29/153 - Préparation de composés comportant des groupes hydroxyle ou O-métal liés à un atome de carbone ne faisant pas partie d'un cycle aromatique à six chaînons par réduction exclusivement des oxydes de carbone avec de l'hydrogène ou des gaz contenant de l'hydrogène caractérisée par le catalyseur utilisé
C07C 29/154 - Préparation de composés comportant des groupes hydroxyle ou O-métal liés à un atome de carbone ne faisant pas partie d'un cycle aromatique à six chaînons par réduction exclusivement des oxydes de carbone avec de l'hydrogène ou des gaz contenant de l'hydrogène caractérisée par le catalyseur utilisé contenant du cuivre, de l'argent, de l'or ou leurs composés
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Noborisato, Tomoki
Kamijo, Takashi
Abrégé
22-rich absorption liquid which is an absorption liquid flowing out of each of the plurality of absorption towers, wherein the number of the regenerating towers is less than the number of the absorption towers.
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
B01D 53/78 - Procédés en phase liquide avec un contact gaz-liquide
B01D 53/96 - Régénération, réactivation ou recyclage des réactifs
F23J 15/04 - Aménagement des dispositifs de traitement de fumées ou de vapeurs des purificateurs, p. ex. pour enlever les matériaux nocifs utilisant des fluides de lavage
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Kawauchi Akihisa
Kono Hiroyuki
Uchida Koji
Hoshi Mitsuaki
Abrégé
This monitoring device comprises: an acceleration acquisition unit for acquiring acceleration data of a vehicle traveling along a track; an acceleration effective value acquisition unit for acquiring a plurality of acceleration effective values obtained by applying a bandpass filter for each of a plurality of constant specific bandwidths to the acceleration data; a corrected acceleration calculation unit for calculating a corrected acceleration on the basis of each of the acceleration effective values of the respective constant specific bandwidths and predetermined correction coefficients corresponding to the respective constant specific bandwidths; and an abnormality detection unit for detecting an abnormality of the vehicle or of the track on the basis of the magnitude of the corrected acceleration.
B61K 13/00 - Autres dispositifs auxiliaires ou accessoires pour les chemins de fer
B61L 25/04 - Indication ou enregistrement de l'identité des trains
G01H 17/00 - Mesure des vibrations mécaniques ou des ondes ultrasonores, sonores ou infrasonores non prévue dans les autres groupes de la présente sous-classe
B60L 3/00 - Dispositifs électriques de sécurité sur véhicules propulsés électriquementContrôle des paramètres de fonctionnement, p. ex. de la vitesse, de la décélération ou de la consommation d’énergie
32.
VERIFICATION PROCESSING DEVICE, VERIFICATION METHOD, AND PROGRAM
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Takao Kenji
Hirayama Keita
Masumori Kenta
Abrégé
This verification processing device is provided with: an inspection processing unit which extracts elements of which states change in a process leading to an insecure event by means of a model inspection for a model to be inspected; a refinement processing unit which determines, for each of the extracted elements, whether the element contributes to the occurrence of the insecure event and refines a cause element that is an element of the cause of the insecure event; and a receiving unit which receives, from an operator, a selection of at least one cause element from among a plurality of the cause elements, wherein the inspection processing unit performs the model inspection once again with respect to an improved model to be inspected, which is a new model to be inspected in which a prescribed measure is executed for the selected cause element.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Tsutsumi Atsushi
Tanaka Tetsuya
Nagafuchi Naoyuki
Kamijo Takashi
Abrégé
This gas turbine plant is provided with: a gas turbine; an exhaust line; a waste heat recovery boiler that generates steam from the heat of exhaust gas and guides the exhaust gas to the exhaust line; a carbon dioxide recovery device that recovers carbon dioxide included in the exhaust gas; a heat exchanger that is disposed between the waste heat recovery boiler and the carbon dioxide recovery device and that cools the exhaust gas to a predetermined temperature; and a circulation line that branches from a position between the carbon dioxide recovery device and the heat exchanger and is connected to an entrance of the gas turbine. The carbon dioxide recovery device comprises an absorption tower that absorbs carbon dioxide included in the exhaust gas by bringing the exhaust gas at the predetermined temperature and an absorbing liquid into contact with one another. The heat exchanger is formed from a material with greater corrosion resistance than a material from which the waste heat recovery boiler is formed.
F02C 3/34 - Ensembles fonctionnels de turbines à gaz caractérisés par l'utilisation de produits de combustion comme fluide de travail avec recyclage d'une partie du fluide de travail, c.-à-d. cycles semi-fermés comportant des produits de combustion dans la partie fermée du cycle
B01D 53/78 - Procédés en phase liquide avec un contact gaz-liquide
F01K 23/10 - Ensembles fonctionnels caractérisés par plus d'une machine motrice fournissant de l'énergie à l'extérieur de l'ensemble, ces machines motrices étant entraînées par des fluides différents les cycles de ces machines motrices étant couplés thermiquement la chaleur de combustion provenant de l'un des cycles chauffant le fluide dans un autre cycle le fluide à la sortie de l'un des cycles chauffant le fluide dans un autre cycle
F02C 6/18 - Utilisation de la chaleur perdue dans les ensembles fonctionnels de turbines à gaz à l'extérieur des ensembles eux-mêmes, p. ex. ensembles fonctionnels de chauffage à turbine à gaz
34.
Olefin and methanol co-production plant and olefin and methanol co-production method
Mitsubishi Heavy Industries Engineering, Ltd. (Japon)
Inventeur(s)
Tachibana, Shinya
Hagimoto, Akiyori
Abrégé
An olefin and methanol co-production plant for co-production of an olefin and methanol from a source gas containing methane includes: an olefin production unit for producing the olefin; and a methanol production unit for producing methanol from a carbon oxide gas in the olefin production unit. The olefin production unit includes a partial oxidative coupling device for producing the olefin by partial oxidative coupling reaction of methane contained in the source gas. The methanol production unit includes a reforming device for producing hydrogen by reforming reaction of methane, and a methanol production device for producing methanol by reaction with hydrogen produced by the reforming device. At least one of the reforming device or the methanol production device is configured to perform reaction using the carbon oxide gas in the olefin production unit.
B01J 8/00 - Procédés chimiques ou physiques en général, conduits en présence de fluides et de particules solidesAppareillage pour de tels procédés
B01J 8/02 - Procédés chimiques ou physiques en général, conduits en présence de fluides et de particules solidesAppareillage pour de tels procédés avec des particules immobiles, p. ex. dans des lits fixes
B01J 8/04 - Procédés chimiques ou physiques en général, conduits en présence de fluides et de particules solidesAppareillage pour de tels procédés avec des particules immobiles, p. ex. dans des lits fixes le fluide passant successivement à travers plusieurs lits
B01J 19/24 - Réacteurs fixes sans élément interne mobile
C01B 3/34 - Production d'hydrogène ou de mélanges gazeux contenant de l'hydrogène par réaction de composés organiques gazeux ou liquides avec des agents gazéifiants, p. ex. de l'eau, du gaz carbonique, de l'air par réaction d'hydrocarbures avec des agents gazéifiants
C07C 2/82 - Préparation d'hydrocarbures à partir d'hydrocarbures contenant un plus petit nombre d'atomes de carbone par condensation d'hydrocarbures avec élimination partielle d'hydrogène par couplage oxydant
C07C 29/151 - Préparation de composés comportant des groupes hydroxyle ou O-métal liés à un atome de carbone ne faisant pas partie d'un cycle aromatique à six chaînons par réduction exclusivement des oxydes de carbone avec de l'hydrogène ou des gaz contenant de l'hydrogène
35.
Guide wheel shock absorbing device, carriage, and vehicle
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Katahira, Kousuke
Tamura, So
Abrégé
A guide wheel shock absorbing device includes an attachment arm, a shock absorbing link provided on the attachment arm and extending in one direction, a shock absorbing link support portion provided on the shock absorbing link and supporting the shock absorbing link in a state of being oscillatable with respect to the attachment arm, a guide wheel coming into contact with a guide rail laid on a traveling track of a vehicle, a guide wheel support portion provided on the shock absorbing link and supporting the guide wheel in a rotatable state, and a shock absorbing elastic portion elastically supporting the shock absorbing link with respect to the attachment arm. The shock absorbing elastic portion has first and second elastic bodies different in displacement with respect to a guide wheel load.
B62D 1/26 - Commandes de direction, c.-à-d. moyens pour produire un changement de direction du véhicule non montées sur le véhicule mécaniques, p. ex. par un dispositif de guidage latéral
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Inui, Masayuki
Susaki, Makoto
Otani, Akihito
Abrégé
A gas purification device comprising: a housing into which gas is introduced; an absorption unit that is provided in a channel for the gas in the interior of the housing and that is for removing material to be removed contained in the gas by way of gas-liquid contact between the gas and an absorption liquid; a liquid reservoir that is provided under the absorption unit inside the housing and that is for storing the absorption liquid dropping from the absorption unit; and an absorption liquid receiver that is provided under the absorption unit and above the liquid reservoir so as to at least partially cover the liquid reservoir.
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
B01D 53/18 - Unités d'absorptionDistributeurs de liquides
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Shimizu Kazutaka
Kimura Keisuke
Hayashi Eigo
Abrégé
This position detection system is provided with: a distance measuring sensor that is attached to a vehicle traveling along a track and is capable of measuring a distance over a predetermined range in the track width direction; an edge position detecting unit that detects an edge position in the track width direction of the track on the basis of distance measurement data from the distance measuring sensor; and a distance calculation unit that calculates a distance in the track width direction between a reference position of the track that is specified from the edge position and a reference position of the vehicle to which the distance measuring sensor is attached.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Sorimachi, Yoshiki
Kamijo, Takashi
Kishimoto, Shinya
Abrégé
2222; a regeneration heater for the purpose of heating the absorption solution drawn out from the regeneration tower; a reboiler line constituted in such a manner that the absorption solution accumulated in the regeneration tower is drawn out and returned, via the regeneration heater, to the regeneration tower; a branched rich solution line branching from the main rich solution line and connected at a site that is more to the downstream side than the regeneration heater on the reboiler line; and a heating unit provided on the branched rich solution line, for the purpose of heating the absorption solution flowing through the branched rich solution line.
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Shimizu Kazutaka
Kimura Keisuke
Hayashi Eigo
Abrégé
This power supply device (20) is provided with: a first power supply system (21) for supplying power to a motor (9) for rotary-driving a traveling wheel (7); a transformation device (22) for transforming voltage by being supplied with a part of the power from the first power supply system (21); a second power supply system (31) for supplying electric power transformed by the transformation device (22) to a steering device (10); and a first backup power supply (35) for supplying power to the transformation device (22). The first backup power supply (35) makes it possible to supply the power to the transformation device (22) when the voltage of the power detected by a VD (21b) of the first power supply system (21) becomes smaller than a predetermined value.
B60L 1/00 - Fourniture de l'énergie électrique à l'équipement auxiliaire des véhicules à traction électrique
B60T 7/12 - Organes d'attaque de la mise en action des freins par déclenchement automatiqueOrganes d'attaque de la mise en action des freins par déclenchement non soumis à la volonté du conducteur ou du passager
B61C 3/02 - Locomotives ou automotrices électriques avec accumulateurs d'électricité
B62D 5/04 - Direction assistée ou à relais de puissance électrique, p. ex. au moyen d'un servomoteur relié au boîtier de direction ou faisant partie de celui-ci
B62D 6/00 - Dispositions pour la commande automatique de la direction en fonction des conditions de conduite, qui sont détectées et pour lesquelles une réaction est appliquée, p. ex. circuits de commande
42.
ABSORPTION SOLUTION REGENERATION DEVICE, CO2 RECOVERY DEVICE, AND ABSORPTION SOLUTION REGENERATION METHOD
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Sorimachi, Yoshiki
Kamijo, Takashi
Kishimoto, Shinya
Abrégé
2222; a first heating unit provided on the main rich solution line, for the purpose of heating the absorption solution flowing in the main rich solution line; and a branched rich solution line branching from the main rich solution line, for the purpose of supplying to the regeneration tower a portion of the absorption solution flowing in the main rich solution line. The branched rich solution line includes a first branch section branching from a first branching point positioned more to the upstream side than the first heating unit on the main rich solution line, and a second branch section branching from a second branching point positioned more to the downstream side than the first heating unit on the main rich solution line, and is equipped further with an adjustment unit for the purpose of adjusting the ratio between a first flow rate for the absorption solution flowing in the first branch section and a second flow rate for the absorption solution flowing in the second branch section.
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Yamada Masahiro
Yanai Noritaka
Shimizu Kazutaka
Abrégé
One embodiment of the present invention is a control device for controlling the travel direction of a traveling body that travels along a plurality of magnetic markers arranged with intervals therebetween on a track, said control device comprising: a first sensor for detecting the magnetic markers; a second sensor for detecting speed or acceleration; a first lateral position calculation unit for calculating a lateral position of the traveling body on the basis of a detection result from the first sensor, when the first sensor has detected a magnetic marker; a second lateral position calculation unit for calculating a lateral position of the traveling body on the basis of a detection result from the second sensor, when the first sensor is not detecting a magnetic marker; and a travel direction control unit for controlling the travel direction of the traveling body on the basis of the lateral position of the traveling body as calculated by the first lateral position calculation unit or the second lateral position calculation unit.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Tachibana, Shinya
Tanaka, Yukio
Hagimoto, Akiyori
Abrégé
A off gas processing device according to the present invention, which processes an off gas that contains ammonia, is provided with: an ammonia scrubber which brings the off gas and an absorption liquid that contains carbonated water into a gas-liquid contact with each other; and a stripper which removes ammonia and carbon dioxide dissolved in the absorption liquid from the absorption liquid that has been extracted from the ammonia scrubber.
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
B01D 53/18 - Unités d'absorptionDistributeurs de liquides
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Nagafuchi Naoyuki
Tsutsumi Atsushi
Kamijo Takashi
Shigeta Hiroaki
Abrégé
This gas turbine plant is provided with: an exhaust line (L1); a carbon dioxide recovery device (3) which recovers carbon dioxide contained in an exhaust gas; a circulation line (L2) connected to a gas turbine (1); a first valve device (V1); a bypass line (L3) bypassing the carbon dioxide recovery device (3); a second valve device (V2) provided on the bypass line (L3); a third valve device (V3) provided at a position between the bypass line (L3) and the carbon dioxide recovery device (3); a densitometer (D) which detects the carbon dioxide concentration of the exhaust gas; and a control device (90) which adjusts the openings of the first valve device (V1), the second valve device (V2), and the third valve device (V3) on the basis of the carbon dioxide concentration and the operating state of the gas turbine (1).
F01K 23/10 - Ensembles fonctionnels caractérisés par plus d'une machine motrice fournissant de l'énergie à l'extérieur de l'ensemble, ces machines motrices étant entraînées par des fluides différents les cycles de ces machines motrices étant couplés thermiquement la chaleur de combustion provenant de l'un des cycles chauffant le fluide dans un autre cycle le fluide à la sortie de l'un des cycles chauffant le fluide dans un autre cycle
F01K 17/04 - Utilisation de la vapeur ou des condensats provenant soit du soutirage, soit de la sortie des ensembles fonctionnels de machines motrices à vapeur pour des buts définis autres que le chauffage
F02C 3/34 - Ensembles fonctionnels de turbines à gaz caractérisés par l'utilisation de produits de combustion comme fluide de travail avec recyclage d'une partie du fluide de travail, c.-à-d. cycles semi-fermés comportant des produits de combustion dans la partie fermée du cycle
46.
MOVING BODY CONTROL DEVICE, MOVING BODY, MOVING BODY CONTROL METHOD, AND PROGRAM
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Okazaki Hirotaka
Yanai Noritaka
Abrégé
A moving body control device controls a moving body traveling along a predetermined track. The moving body control device is provided with: an information acquisition unit for acquiring moving-body-specific information that includes a bogie position and a vehicle body mass, a moving body position, a moving body speed, and track information that includes curvature for each position of the track; and a feed-forward steering angle calculation unit for calculating a steering angle by using the moving-body-specific information, the moving body position, the moving body speed, and the track information. The feed-forward steering angle calculation unit calculates the steering angle according to the sum of: a kinematic component calculated on the basis of the geometric relationship between the bogie position and the curvature of the track at the moving body position; and a kinetic component calculated on the basis of an equation of motion that includes the bogie position, the vehicle body mass, the moving body speed, and the curvature and the curvature change rate of the track at the moving body position.
B61F 5/38 - Aménagements ou dispositifs pour ajuster ou pour permettre l'auto-ajustement des roues des essieux ou des bogies dans les courbes, p. ex. essieux à jeu transversal, essieux oscillants
B61F 5/44 - Ajustement commandé par les mouvements de la caisse du véhicule
47.
TRAIN CONTROL SYSTEM, ON-BOARD DEVICE AND TRAIN CONTROL METHOD
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Yanai Noritaka
Ishikawa Tomonori
Abrégé
One embodiment of the present invention is a train control system which is a device executing an exclusive control between trains for each of a plurality of sections dividing up a track, wherein said train control system comprises: an on-ground device which manages whether each of the trains has a right to advance into each of the sections; and, an on-board device which is mounted on the trains, said trains comprising an on-board branch device, and with respect to one of the sections to which the on-ground device has given a certain train the right to advance, if said section is a branch section, which is a section that includes a branch, and when a branch direction of the train in said branch section and a branch direction of the on-board branch device coincide, said on-board device self-determines whether it is possible to advance into said branch section.
B60L 15/40 - Adaptation sur le véhicule de l'installation de commande à distance à partir d'un endroit fixe
B61L 3/08 - Dispositifs le long de la voie commandant des dispositifs sur le véhicule ou sur le train, p. ex. pour relâcher les freins ou pour manœuvrer un signal avertisseur à des endroits choisis le long de la voie, p. ex. à commande intermittente à commande électrique
48.
COMPOSITE AMINE ABSORPTION SOLUTION, AND DEVICE AND METHOD BOTH FOR REMOVING CO2 OR H2S OR BOTH OF THEM
C07C 43/11 - Polyéthers contenant des unités —O—(C—C—O—)n, avec 2 ≤n ≤ 10
C07C 43/13 - Éthers saturés contenant des groupes hydroxyle ou O-métal
C07C 215/08 - Composés contenant des groupes amino et hydroxy liés au même squelette carboné ayant des groupes hydroxy et des groupes amino liés à des atomes de carbone acycliques du même squelette carboné le squelette carboné étant saturé et acyclique avec un seul groupe hydroxy et un seul groupe amino liés au squelette carboné
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Tachibana, Shinya
Hagimoto, Akiyori
Abrégé
A fertilizer production plant for producing a fertilizer from a raw material gas containing methane comprises: a reforming unit that reforms a first raw material gas, which is a part of the raw material gas, to obtain a reformed gas; an ammonia production unit that produces ammonia by using nitrogen and hydrogen contained in the reformed gas; a urea production unit that produces urea by using the ammonia; a urea-formaldehyde aggregate production unit that produces an urea-formaldehyde aggregate; and a fertilizer production unit that produces fertilizer using the urea-formaldehyde aggregate, wherein the urea-formaldehyde aggregate production unit includes a formaldehyde production device that produces formaldehyde by using a second raw material gas which is a part of the raw material gas, and a urea-formaldehyde aggregate production device that produces the urea-formaldehyde aggregate by using the formaldehyde and urea.
C05C 9/02 - Engrais contenant de l'urée ou ses composés contenant des produits de condensation uréeformaldéhyde
C01B 3/24 - Production d'hydrogène ou de mélanges gazeux contenant de l'hydrogène par décomposition de composés organiques gazeux ou liquides d'hydrocarbures
C07C 45/28 - Préparation de composés comportant des groupes C=O liés uniquement à des atomes de carbone ou d'hydrogènePréparation des chélates de ces composés par oxydation de restes —CHx
C07C 47/048 - Préparation par oxydation d'hydrocarbures
C07C 273/04 - Préparation d'urée ou de ses dérivés, c.-à-d. de composés contenant l'un des groupes les atomes d'azote ne faisant pas partie de groupes nitro ou nitroso d'urée, de ses sels, de ses complexes ou de ses composés d'addition à partir de dioxyde de carbone et d'ammoniac
50.
PIPE INSPECTION APPARATUS AND PIPE INSPECTION METHOD
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Kamibayashi, Masakazu
Hayashi, Kyohei
Sugiura, Atsushi
Ito, Motofumi
Iwakami, Takanori
Abrégé
A pipe inspection apparatus (100) according to an embodiment of the present invention is provided with: moving devices (1, 2) that are attached to a pipe (6) to be inspected and that are configured to travel along the extending direction of the pipe; and at least one tire-type ultrasonic probe (150) that is provided to a frame (10, 20) of each of the moving devices and that is configured to measure the thickness of the pipe, wherein the tire-type ultrasonic probe includes at least one vibrator (201) that is configured to emit an ultrasonic beam so as to be able to point-converge.
G01N 29/265 - Dispositions pour l'orientation ou le balayage en déplaçant le capteur par rapport à un matériau fixe
G01N 29/28 - Recherche ou analyse des matériaux par l'emploi d'ondes ultrasonores, sonores ou infrasonoresVisualisation de l'intérieur d'objets par transmission d'ondes ultrasonores ou sonores à travers l'objet Détails pour établir le couplage acoustique
51.
ACIDIC GAS ABSORPTION APPARATUS AND ACIDIC GAS ABSORPTION METHOD
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Lin Yu-Jeng
Kamijo Takashi
Kishimoto Shinya
Inui Masayuki
Noborisato Tomoki
Abrégé
Provided is an acidic gas absorption apparatus with which it is possible to suppress the temperature of a contact layer even when the aforementioned layer is above a return position for returning a cooled absorption liquid. The present invention comprises: absorption liquid introduction piping (10) connected to a container (3) above a contact layer (5), the absorption liquid introduction piping (10) introducing an absorption liquid into the container 3; absorption liquid discharge piping (12) connected to a bottom part (3b) of the container (3), the absorption liquid discharge piping (12) discharging the absorption liquid that has absorbed an acidic gas; a first absorption liquid return line (L1) that, after some of the absorption liquid has been extracted from a first height position H1 and the absorption liquid has been cooled by a cooler (18), returns the absorption liquid to the contact layer 5 at a return height position (Hr1) that is higher than the first height position (H1); and a second absorption liquid return line (L2) that, after some of the absorption liquid has been extracted from a second height position (H2) that is higher than the return height position (Hr1) and the absorption liquid has been cooled by a cooler (18), returns the absorption liquid to the contact layer (5).
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
B01D 53/18 - Unités d'absorptionDistributeurs de liquides
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Takao Kenji
Hirayama Keita
Abrégé
This validation processing device is provided with: a processing unit that performs model inspection on a model to be inspected; and a selection unit that selects, on the basis of the result of the model inspection, one element from among elements that have undergone state change in a process leading to an unsafe event. The processing unit further performs model inspection again on the model to be inspected excluding the one element.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Inui, Masayuki
Susaki, Makoto
Otani, Akihito
Abrégé
This gas purification device is provided with: a housing into which gas is introduced; a filter section provided in the housing and removing impurities in the gas from the gas; and a gas purification agent which, within the housing, is provided either in a space downstream of the filter section with respect to the flow of gas or to the filter section and which removes substances to be removed in the gas from the gas.
B01D 53/92 - Épuration chimique ou biologique des gaz résiduaires des gaz d'échappement des moteurs à combustion
B01D 46/24 - Séparateurs de particules utilisant des corps filtrants creux et rigides, p. ex. appareils de précipitation de poussières
B01D 53/94 - Épuration chimique ou biologique des gaz résiduaires des gaz d'échappement des moteurs à combustion par des procédés catalytiques
B01J 35/02 - Catalyseurs caractérisés par leur forme ou leurs propriétés physiques, en général solides
B63H 21/32 - Aménagements relatifs aux conduits d'échappement pour appareils de propulsionCheminées propres aux navires
F01N 3/035 - Silencieux ou dispositifs d'échappement comportant des moyens pour purifier, rendre inoffensifs ou traiter les gaz d'échappement pour refroidir ou pour enlever les constituants solides des gaz d'échappement au moyen de filtres en combinaison avec d'autres dispositifs avec des réacteurs catalytiques
F01N 3/24 - Silencieux ou dispositifs d'échappement comportant des moyens pour purifier, rendre inoffensifs ou traiter les gaz d'échappement pour rendre les gaz d'échappement inoffensifs par conversion thermique ou catalytique des composants nocifs des gaz d'échappement caractérisés par les aspects de structure de l'appareillage de conversion
54.
RECLAIMING DEVICE, CO2 RECOVERY DEVICE PROVIDED THEREWITH, AND RECLAIMING METHOD
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Miyamoto, Osamu
Kamijo, Takashi
Tsujiuchi, Tatsuya
Abrégé
This reclaiming device comprises: a container; an absorption liquid supply line for supplying an absorption liquid including an absorbent to the container; a water supply line for supplying water to the container; a vapor discharge line for discharging vapor from the container; a heating unit for heating a liquid that includes the water and the absorption liquid; and a control unit that is structured so as to determine, on the basis of the temperature of the liquid that has accumulated in the container, the completion timing of an absorbent recovery process in which a vapor that includes the absorbent is recovered via the vapor discharge line due to the heating unit heating the liquid.
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
MITSUBISHI HEAVY INDUSTRIES, LTD. (Japon)
Inventeur(s)
Miyamoto, Osamu
Kamijo, Takashi
Tsujiuchi, Tatsuya
Abrégé
This absorption liquid regeneration device is characterized by comprising: a regeneration tower for regenerating a CO2 absorption liquid; a return flow water drum that is structured so as to separate an emitted gas from the regeneration tower into a CO2 gas and condensed water and cause the condensed water to flow back to the regeneration tower; and a cleaning section that is provided within a gas phase section of the return flow water drum, or on a CO2 flow path along which the CO2 gas that has flowed out from the gas phase section flows, and is structured so as to use a cleaning liquid to remove a CO2 absorption agent included in the CO2 gas, wherein the cleaning liquid has a lower concentration of the CO2 absorption agent compared to the condensed water that has accumulated in a liquid phase section of the return flow water drum.
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Miyamoto, Osamu
Kamijo, Takashi
Tsujiuchi, Tatsuya
Abrégé
22222222-containing gas distributed through the gas-phase portion, by using a first cleaning solution including at least the condensed water from the recirculated water drum or water derived from the condensed water; and a control unit that is configured so as to adjust the amount of the first cleaning solution supplied to the first cleaning part so that a concentration of the absorbent in the condensed water is maintained at a prescribed value or lower.
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Miyamoto, Osamu
Kamijo, Takashi
Tsujiuchi, Tatsuya
Abrégé
The reclamation apparatus according to the present invention comprises: a container for performing an absorbed liquid reclamation process; a waste liquid line configured so as to allow waste liquid from the container to flow therethrough; a waste liquid cooler, provided to the waste liquid line, for cooling the waste liquid from the container; and a cleaning water supply line for supplying, to the waste liquid cooler, cleaning water for cleaning the waste liquid cooler.
B01D 53/96 - Régénération, réactivation ou recyclage des réactifs
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Miyamoto, Osamu
Kamijo, Takashi
Tsujiuchi, Tatsuya
Abrégé
This reclaiming device comprises: a container form performing a process to reclaim an absorbing liquid; an absorbing liquid supply line for supplying the absorbing liquid to the container; a heat exchanger for heating the liquid inside the container, the heat exchanger being provided inside the container; a circulation line for drawing the liquid out from the container, causing the liquid to circulate, and returning the liquid to the container; and a circulation pump provided to the circulation line.
B01D 53/96 - Régénération, réactivation ou recyclage des réactifs
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Kawauchi Akihisa
Kono Hiroyuki
Uchida Koji
Yamashita Teruo
Abrégé
This load estimation apparatus is provided with: an acceleration sensor that measures a first acceleration and that is attached to a traveling bogie body for supporting wheels and/or a vehicle body attached to the traveling bogie body; and a control unit that estimates a load on the traveling bogie body, on the basis of the first acceleration and load information that is acquired in advance and that includes the acceleration and the load associated with each other.
B61F 5/24 - Moyens pour amortir ou minimiser les mouvements de roulis, lacet, galop ou tangage des châssis
B61K 13/00 - Autres dispositifs auxiliaires ou accessoires pour les chemins de fer
G01H 17/00 - Mesure des vibrations mécaniques ou des ondes ultrasonores, sonores ou infrasonores non prévue dans les autres groupes de la présente sous-classe
61.
GASIFIED-GAS PROCESSING EQUIPMENT AND GASIFIED-GAS PROCESSING METHOD
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Yoshida, Kaori
Kan, Rikio
Kakesako, Seiji
Abrégé
The present invention includes: a first heat exchanger 11 for performing heat exchange between a purified gas, which is obtained by removing at least ammonia and hydrogen chloride from a gasified gas, and vapor at a saturation temperature; a second heat exchanger 12 for performing heat exchange between the gasified gas and at least a condensed liquid generated by the heat exchange; and a circulation system 13 for circulating, between the first heat exchanger 11 and the second heat exchanger 12, a circulation fluid that contains at least one of the vapor and the condensed liquid, wherein the circulation system 13 is configured so as to supply the circulation fluid that contains at least the condensed liquid generated in the first heat exchanger 11 to the second heat exchanger 12, and so as to supply the circulation fluid that contains at least the vapor generated in the second heat exchanger 12 to the first heat exchanger 11.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Yoshida, Kaori
Kan, Rikio
Kakesako, Seiji
Abrégé
Provided is a treatment apparatus 100 for wastewater that is produced as a result of energy gas purification and that contains at least ammonium ions. The treatment apparatus 100 includes: decompression equipment 10 for decompressing the wastewater; alkaline-agent addition equipment 20 for adding an alkaline agent to the wastewater after the decompression; and ammonia stripping equipment 30 for stripping ammonia from the wastewater after the alkaline-agent addition.
C10K 1/10 - Purification des gaz combustibles contenant de l'oxyde de carbone par lavage avec des liquidesRégénération des liqueurs de lavage avec des liquides aqueux
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Yoshida, Kaori
Kan, Rikio
Matsumoto, Naoya
Abrégé
A catalytic reactor according to one embodiment comprises: a catalyst unit including at least one catalyst, the catalyst unit having a honeycomb structure in which a plurality of flow paths extending in the axial direction are formed; a reactor casing that accommodates the catalyst unit; and a seal plate that blocks a space between the outer periphery of the catalyst unit and the inner periphery of the reactor casing, the seal plate blocking the space between the outer periphery of the catalyst unit and the inner periphery of the reactor casing at an end part of the catalyst unit that is upstream in the flow of a fluid flowing within the reactor casing.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Yoshida, Kaori
Kan, Rikio
Murakami, Moritoshi
Matsumoto, Naoya
Abrégé
A method for detaching a catalyst unit according to one embodiment involves detaching a catalyst unit that is accommodated in a reactor casing of a catalytic reactor, wherein the method comprises a step in which, when the catalyst unit is detached from the reactor casing, which is configured so as to assume a cylindrical shape extending in the vertical direction and so that a gas at a gauge pressure of 0.2 MPa or higher is introduced into the interior of the reactor casing, the catalyst unit is passed through a gas flow passage opening that is formed in the top of the reaction casing.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Okazaki, Hirotaka
Yanai, Noritaka
Yamada, Masahiro
Miyajima, Yutaka
Abrégé
A software-testing device includes a conversion unit configured to convert a PLC program for operating a programmable logic controller into a general-purpose language program described in a general-purpose programming language, and a test execution unit configured to perform a test on the general-purpose language program.
G06F 11/36 - Prévention d'erreurs par analyse, par débogage ou par test de logiciel
G05B 19/05 - Automates à logique programmables, p. ex. simulant les interconnexions logiques de signaux d'après des diagrammes en échelle ou des organigrammes
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Tachibana, Shinya
Tanaka, Yukio
Hagimoto, Akiyori
Komada, So
Abrégé
This fertilizer production plant 100 is for producing a fertilizer containing urea, the fertilizer production plant 100 being characterized by comprising a urea production device 22 for the purpose of producing urea by using ammonia, and a scrubber 80B having an interior space for the purpose of bringing into contact with an acidic absorption solution an off-gas from the fertilizer production plant 100 that is an off-gas containing ammonia, wherein the acidic absorption solution contains carbonic acid.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Kuroki, Katsuya
Kawauchi, Akihisa
Kono, Hiroyuki
Kora, Takeshi
Mitsui, Yoshinori
Hayashi, Eigo
Abrégé
This railway vehicle is provided with: a bracket including a contact surface which is in contact with a second surface of a second plate member, and also including a recess which is provided in a portion facing an uneven surface; and a dynamic vibration absorber including a damper section which is located on the side opposite the contact surface and which is affixed to the bracket, and also including a weight section which is disposed on the side opposite the side to which the bracket is provided and which is disposed on the damper section. The bracket is separated from the uneven surface.
B61F 5/24 - Moyens pour amortir ou minimiser les mouvements de roulis, lacet, galop ou tangage des châssis
B61F 5/38 - Aménagements ou dispositifs pour ajuster ou pour permettre l'auto-ajustement des roues des essieux ou des bogies dans les courbes, p. ex. essieux à jeu transversal, essieux oscillants
68.
PLANT AND COMBUSTION EXHAUST GAS PROCESSING METHOD
F01K 23/10 - Ensembles fonctionnels caractérisés par plus d'une machine motrice fournissant de l'énergie à l'extérieur de l'ensemble, ces machines motrices étant entraînées par des fluides différents les cycles de ces machines motrices étant couplés thermiquement la chaleur de combustion provenant de l'un des cycles chauffant le fluide dans un autre cycle le fluide à la sortie de l'un des cycles chauffant le fluide dans un autre cycle
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
B01D 53/78 - Procédés en phase liquide avec un contact gaz-liquide
F01K 17/02 - Utilisation de la vapeur ou des condensats provenant soit du soutirage, soit de la sortie des ensembles fonctionnels de machines motrices à vapeur pour le chauffage, p. ex. industriel, domestique
F02G 5/02 - Utilisation de la chaleur perdue dans les gaz d'échappement
69.
SALT CONCENTRATION DEVICE AND SCALE DETECTION METHOD FOR SALT CONCENTRATION DEVICE
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Ito, Yoshiaki
Kakigami, Hidemasa
Suzuki, Hideo
Abrégé
211313 for discharging concentrated water 16 from the concentration device main body 14 is made to branch, that further concentrates the salt from the concentrated water 16a made to branch, and that comprises a filter membrane 22 for detection by which permeate water 21 for detection is obtained; and a pressurization device 24 for detection that pressurizes the concentrated water 16a made to branch to the concentration device 23 for detection, then supplies the result. A solution permeation parameter and a pre/post-change solute permeation parameter for the water production amount of the concentration device main body 14 obtained via the permeate water 12 and the permeate water 21 for detection are used to detect whether there is change in the adhesion of scale to the concentration device main body 14.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Yoshida, Kaori
Yamazaki, Ayumu
Kan, Rikio
Kakesako, Seiji
Abrégé
A gas purifier which comprises an ammonia removal part where some of the ammonia contained in a first gas is removed, a first-offgas collection part where a first offgas, which contains the ammonia removed in the ammonia removal part, is collected, a hydrogen sulfide/ammonia removal part where hydrogen sulfide and ammonia are removed from a second gas, which was obtained by removing some of the ammonia from the first gas in the ammonia removal part, a second-offgas collection part for collecting a second offgas, which contains the hydrogen sulfide and ammonia removed in the hydrogen sulfide/ammonia removal part, and a combustion part where the first offgas and the second offgas are burned, wherein the combustion part comprises a first combustion chamber, in which combustion is conducted in a reducing atmosphere, a second combustion chamber, which lies downstream from the first combustion chamber and in which combustion is conducted in a reducing atmosphere, and a third combustion chamber, which lies downstream from the second combustion chamber and in which combustion is conducted in an oxidizing atmosphere, and the combustion part has been configured so that the first offgas flows into the first combustion chamber and the second offgas flows into the third combustion chamber.
C10K 1/10 - Purification des gaz combustibles contenant de l'oxyde de carbone par lavage avec des liquidesRégénération des liqueurs de lavage avec des liquides aqueux
F23G 7/06 - Procédés ou appareils, p. ex. incinérateurs, spécialement adaptés à la combustion de déchets particuliers ou de combustibles pauvres, p. ex. des produits chimiques de gaz d'évacuation ou de gaz nocifs, p. ex. de gaz d'échappement
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Yoshida, Kaori
Kan, Rikio
Kakesako, Seiji
Abrégé
A gas purifier including: a conversion chamber packed with a catalyst for hydrolyzing both carbonyl sulfide and hydrogen cyanide; an upstream-side heat exchanger where a gas which is to flow into the conversion chamber is heat-exchanged with a cooling fluid for gas cooling; a reaction-temperature estimation member for estimating the reaction temperature inside the conversion chamber; and a flow-rate regulation member for regulating the flow rate of the cooling fluid that is flowing into the upstream-side heat exchanger, on the basis of an estimate by the reaction-temperature estimation member, to thereby control the reaction temperature.
C10K 1/34 - Purification des gaz combustibles contenant de l'oxyde de carbone par conversion catalytique des impuretés en des matières plus facilement éliminables
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Yoshida, Kaori
Kan, Rikio
Kakesako, Seiji
Abrégé
Hydrocarbon recovery equipment that comprises: a water wash tower that brings a gas into contact with water and causes hydrocarbons included in the gas to precipitate in the water; an auto-strainer that continuously removes the hydrocarbons and a portion of the water from the water into which the hydrocarbons have been mixed; an oil/water mixer that mixes the hydrocarbons and the water that have been removed by the auto-strainer with an organic solvent to prepare an oil/water liquid mixture; and an oil/water separator that separates the oil/water liquid mixture prepared by the oil/water mixer into an oil phase and an aqueous phase.
C10K 1/10 - Purification des gaz combustibles contenant de l'oxyde de carbone par lavage avec des liquidesRégénération des liqueurs de lavage avec des liquides aqueux
B01D 17/025 - Séparation de liquides non miscibles par gravité, dans un bac de décantation
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Yoshida, Kaori
Murakami, Moritoshi
Yamazaki, Ayumu
Kan, Rikio
Kunimune, Kiyotaka
Nakayama, Koji
Abrégé
An exhaust gas cooler that comprises: an economizer that exchanges heat between exhaust gas and first water; and water supply pipes that are for supplying second water that has a lower temperature than the first water into the first water. The second water is separately supplied into first water that flows out of the economizer and first water that flows into the economizer.
F22D 1/02 - Appareils de chauffage d'eau d'alimentation, p. ex. préchauffeurs avec tubes d'eau disposés dans le foyer de la chaudière, les tubes de fumées ou sur le trajet des fumées
F22D 5/26 - Systèmes automatiques de commande de l'alimentation
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Miyamoto, Osamu
Tsujiuchi, Tatsuya
Kamijo, Takashi
Abrégé
222222222122122222222223030 which is connected to the condensed water drum, and supplies the compressor condensed water 43 separated from the condensed water drum as in-system feed water 43A or out-of-system feed water 43B.
B01D 53/78 - Procédés en phase liquide avec un contact gaz-liquide
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
F23G 7/06 - Procédés ou appareils, p. ex. incinérateurs, spécialement adaptés à la combustion de déchets particuliers ou de combustibles pauvres, p. ex. des produits chimiques de gaz d'évacuation ou de gaz nocifs, p. ex. de gaz d'échappement
77.
TUBE LEAKAGE DETECTION DEVICE AND TUBE LEAKAGE DETECTION METHOD
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Yoshida, Kaori
Yamazaki, Ayumu
Kan, Rikio
Kunimune, Kiyotaka
Nakayama, Koji
Abrégé
This tube leakage detection device, which detects a leak in at least one tube of a heat exchanger that raises the temperature of a liquid flowing inside the at least one tube by causing an exchange of heat between the liquid and a fluid flowing on the outside of the at least one tube, is provided with: an inlet-side opening/closing valve and an outlet-side opening/closing valve which are respectively provided on the inlet-side end and the outlet–side end of the at least one tube; and a pressure detection member that detects the pressure inside the tube between the inlet-side opening/closing valve and the outlet-side opening/closing valve.
G01M 3/26 - Examen de l'étanchéité des structures ou ouvrages vis-à-vis d'un fluide par utilisation d'un fluide ou en faisant le vide par mesure du taux de perte ou de gain d'un fluide, p. ex. avec des dispositifs réagissant à la pression, avec des indicateurs de débit
G01M 3/28 - Examen de l'étanchéité des structures ou ouvrages vis-à-vis d'un fluide par utilisation d'un fluide ou en faisant le vide par mesure du taux de perte ou de gain d'un fluide, p. ex. avec des dispositifs réagissant à la pression, avec des indicateurs de débit pour tuyaux, câbles ou tubesExamen de l'étanchéité des structures ou ouvrages vis-à-vis d'un fluide par utilisation d'un fluide ou en faisant le vide par mesure du taux de perte ou de gain d'un fluide, p. ex. avec des dispositifs réagissant à la pression, avec des indicateurs de débit pour raccords ou joints d'étanchéité de tuyauxExamen de l'étanchéité des structures ou ouvrages vis-à-vis d'un fluide par utilisation d'un fluide ou en faisant le vide par mesure du taux de perte ou de gain d'un fluide, p. ex. avec des dispositifs réagissant à la pression, avec des indicateurs de débit pour soupapes
78.
EXHAUST GAS PROCESSING APPARATUS AND EXHAUST GAS PROCESSING METHOD
F23G 7/06 - Procédés ou appareils, p. ex. incinérateurs, spécialement adaptés à la combustion de déchets particuliers ou de combustibles pauvres, p. ex. des produits chimiques de gaz d'évacuation ou de gaz nocifs, p. ex. de gaz d'échappement
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Katahira Kousuke
Tamura So
Abrégé
A railroad truck (2) comprising: a traveling wheel (11) that travels on a travel surface (102) of a track (100); an axle (10) that is provided below a vehicle body 3 and has the traveling wheel (11) attached thereto; a railroad truck body (12) that supports the axle (10); a guide device (13) which can be guided by the track (100) and is provided so as to be turnable about the turning axis (O) located along the railroad truck body (12) in the vertical direction; a steering device (14) that, when the guide device (13) turns along the curved portion (101) of the track (100), steers the traveling wheel (11) in response to the turning of the guide device (13); and an incline device (15) that is connected to the guide device (13) and generates an incline force as the guide device (13) turns, where, in context of the curved portion (101), the outer side of the vehicle body (3) is inclined upward relative to the inner side.
B61F 5/38 - Aménagements ou dispositifs pour ajuster ou pour permettre l'auto-ajustement des roues des essieux ou des bogies dans les courbes, p. ex. essieux à jeu transversal, essieux oscillants
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Yanai, Noritaka
Yamada, Masahiro
Ishikawa, Tomonori
Abrégé
The present invention provides an operation system which can finely control the operation of a train in response to the operation state of the train at low cost in a traffic system that uses a process of dynamically setting a route and an operation interval. This operation management system 10 is provided with: on-vehicle control units 30 installed on trains 3 that are traveling; and an on-ground control unit 20 installed on the ground. The on-vehicle control units 30 are installed on a plurality of trains 3, respectively, the operations of which are managed by the operation management system 1, perform a track demand on the basis of a delivered operation mode, and deliver information on the track demand to the on-ground control unit 20. The on-ground control unit 20 controls the progress of the train 3 on the basis of the delivered track demand.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Katahira Kousuke
Tamura So
Abrégé
The present invention is provided with: a fitting arm; a shock absorbing link (27) that is provided to the fitting arm and that extends in one direction; a shock absorbing link support part that is provided to the shock absorbing link (27) and that supports the shock absorbing link (27) so as to be oscillable with respect to the fitting arm; a guide wheel that comes into contact with a guide rail laid on a traveling track of a vehicle; a guide wheel support part that is provided to the shock absorbing link (27) and that supports the guide wheel so as to be rotatable; and a shock absorption elastic part (35) that elastically supports the shock absorbing link (27) with respect to the fitting arm, wherein the shock absorption elastic part (35) has first and second elastic bodies (65, 67) that are different from each other in displacement with respect to a guide wheel load.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Takao Kenji
Hirayama Keita
Yanai Noritaka
Abrégé
A verification-processing device provided with: an acquisition unit for acquiring a circuit logic model indicated by an evaluation expression represented by a logical expression assuming a relay, an element, and a connecting line as variables that form a relay logic circuit to be verified, the evaluation expression including the logical expression for the case in which a failure event occurs at least to the relay logic circuit; and a determination unit for determining, on the basis of the circuit logic model, the logical state of the output of the relay when a failure event occurs to the element or the connecting line.
G01R 31/02 - Essai des appareils, des lignes ou des composants électriques pour y déceler la présence de courts-circuits, de discontinuités, de fuites ou de connexions incorrectes de lignes
B01J 37/00 - Procédés de préparation des catalyseurs, en généralProcédés d'activation des catalyseurs, en général
C10K 1/34 - Purification des gaz combustibles contenant de l'oxyde de carbone par conversion catalytique des impuretés en des matières plus facilement éliminables
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Nakagawa Yosuke
Shimada Daisuke
Tsujiuchi Tatsuya
Abrégé
22 recovery device is provided with a bypass pipe for feeding a rich solution to be introduced into a heat exchanger to undergo heat exchange to an absorption fluid feeding pipe that returns the absorption fluid to an absorption tower.
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
B01D 53/78 - Procédés en phase liquide avec un contact gaz-liquide
B01D 53/96 - Régénération, réactivation ou recyclage des réactifs
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Nochi, Katsumi
Yasutake, Toshinobu
Yoshida, Kaori
Abrégé
Provided are: a catalyst for use in the hydrolysis of COS, which can improve a COS conversion rate at a low temperature; and a method for producing the catalyst. A catalyst for use in the hydrolysis of COS, wherein the catalyst comprises a catalyst containing titanium dioxide supported on a barium compound and an auxiliary catalyst, wherein the auxiliary catalyst is at least one compound selected from the group consisting of a potassium compound, a sodium compound and a cesium compound.
C10K 1/34 - Purification des gaz combustibles contenant de l'oxyde de carbone par conversion catalytique des impuretés en des matières plus facilement éliminables
86.
ACRYLIC ACID PRODUCTION PLANT AND ACRYLIC ACID PRODUCTION METHOD
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Tachibana, Shinya
Hagimoto, Akiyori
Abrégé
The purpose of the present invention is to provide an acrylic acid production plant in which acrylic acid can be produced using propylene obtained in a partial oxidation coupling reaction of methane. To achieve the foregoing, provided is an acrylic acid production plant 100 for producing acrylic acid from a natural gas that contains methane, the plant comprising: an OCM reaction apparatus 6 (a partial oxidation coupling reaction apparatus) for producing propylene by subjecting methane to a partial oxidation coupling reaction; and an acrylic acid production apparatus 8 for producing acrylic acid by oxidizing propylene that has been produced in the OCM reaction apparatus 6.
C07C 51/25 - Préparation d'acides carboxyliques, de leurs sels, halogénures ou anhydrides par oxydation avec l'oxygène moléculaire de composés non saturés ne contenant pas de cycle aromatique à six chaînons
C07C 2/82 - Préparation d'hydrocarbures à partir d'hydrocarbures contenant un plus petit nombre d'atomes de carbone par condensation d'hydrocarbures avec élimination partielle d'hydrogène par couplage oxydant
C07C 51/15 - Préparation d'acides carboxyliques, de leurs sels, halogénures ou anhydrides par réaction de composés organiques avec l'anhydride carbonique, p. ex. synthèse de Kolbe-Schmitt
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Tachibana, Shinya
Hagimoto, Akiyori
Abrégé
Provided is a co-production plant 100 for an olefin and methanol, which is used to produce an olefin and methanol from a natural gas that contains methane, and which comprises: an olefin production unit 10 for producing an olefin; and a methanol production unit 20 for producing methanol using carbon dioxide which is in the olefin production unit 10. The olefin production unit 10 includes an OCM reaction apparatus 6 for producing an olefin by subjecting methane contained in a natural gas to a partial oxidation coupling reaction. The methanol production unit 20 includes: a reforming apparatus 21 for producing hydrogen by means of a reforming reaction using methane; and a methanol production apparatus 22 for producing methanol by means of a reaction using hydrogen produced in the reforming apparatus 21. The reforming apparatus 21 is constituted so as to carry out a reaction using carbon dioxide which is in the olefin production unit 10.
C07C 2/82 - Préparation d'hydrocarbures à partir d'hydrocarbures contenant un plus petit nombre d'atomes de carbone par condensation d'hydrocarbures avec élimination partielle d'hydrogène par couplage oxydant
C07C 29/151 - Préparation de composés comportant des groupes hydroxyle ou O-métal liés à un atome de carbone ne faisant pas partie d'un cycle aromatique à six chaînons par réduction exclusivement des oxydes de carbone avec de l'hydrogène ou des gaz contenant de l'hydrogène
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Tachibana, Shinya
Tanaka, Yukio
Hagimoto, Akiyori
Komada, So
Abrégé
The present invention is provided with a reformer 1 for reforming a hydrocarbon source to obtain hydrogen and carbon dioxide, an ammonia production unit 10 for using the hydrogen and carbon dioxide obtained by the reformer 1 to obtain ammonia, a urea production unit 20 for using the carbon dioxide obtained by the reformer 1 and the ammonia obtained by the ammonia production unit 10 to obtain urea, a methanol production unit 30 for using the hydrogen and carbon dioxide obtained by the reformer 1 to obtain methanol, a formaldehyde production unit 40 for oxidizing the methanol obtained by the methanol production unit 30 to obtain formaldehyde, a mixing device 51 for using the urea obtained by the urea production unit 20 and the formaldehyde obtained by the formaldehyde production unit 40 to obtain a urea-formaldehyde aggregate, and a granulating device 61 for using the urea obtained by the urea production unit 20 and the urea-formaldehyde aggregate obtained by the mixing device 51 to produce fertilizer.
C05C 9/02 - Engrais contenant de l'urée ou ses composés contenant des produits de condensation uréeformaldéhyde
C01B 3/38 - Production d'hydrogène ou de mélanges gazeux contenant de l'hydrogène par réaction de composés organiques gazeux ou liquides avec des agents gazéifiants, p. ex. de l'eau, du gaz carbonique, de l'air par réaction d'hydrocarbures avec des agents gazéifiants avec des catalyseurs
C01B 3/56 - Séparation de l'hydrogène ou des gaz contenant de l'hydrogène à partir de mélanges gazeux, p. ex. purification par contact avec des solidesRégénération des solides usés
C07C 27/00 - Procédés impliquant la production simultanée de plusieurs classes de composés contenant de l'oxygène
C07C 29/15 - Préparation de composés comportant des groupes hydroxyle ou O-métal liés à un atome de carbone ne faisant pas partie d'un cycle aromatique à six chaînons par réduction exclusivement des oxydes de carbone
C07C 45/38 - Préparation de composés comportant des groupes C=O liés uniquement à des atomes de carbone ou d'hydrogènePréparation des chélates de ces composés par oxydation avec l'oxygène moléculaire de groupes fonctionnels C—O— en groupes C=O d'un groupe hydroxyle primaire
C07C 47/052 - Préparation par oxydation de méthanol
C07C 273/10 - Préparation d'urée ou de ses dérivés, c.-à-d. de composés contenant l'un des groupes les atomes d'azote ne faisant pas partie de groupes nitro ou nitroso d'urée, de ses sels, de ses complexes ou de ses composés d'addition combinée avec la synthèse d'ammoniac
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Hirata, Takuya
Tanaka, Hiroshi
Yoshida, Kaori
Endo, Takahiko
Abrégé
22 gas; a reflux line 40b for refluxing the regeneration column condensed water 44 more to the top side of the column than a rich solution introduction unit 14a; a condensed water receiving unit 14e for storing the condensed water 44 that has been introduced by the reflux line 40b; and a first condensed water withdrawing line 14g-1, connected to a lean solution supply line 53, for withdrawing condensed water 44 from a condensed water withdrawal unit 14f in the condensed water receiving unit 14e.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Okamoto, Shinichi
Nakamura, Shinji
Hirata, Takuya
Abrégé
Provided are a method and system for recovering an acidic gas whereby metal ions such as iron ion, a heavy metal ion, etc. in an amine absorbing solution can be quantified within a short period of time at a high accuracy and a factor which enhances the corrosive properties of the amine absorbing solution can be removed at an early stage. The method for recovering an acidic gas comprises a step for gas/liquid contacting a gas to be treated with an amine absorbing solution and thus allowing the absorbing solution to absorb an acidic gas to thereby remove the acidic gas from the gas to be treated, a step for diffusing the gas from the absorbing solution having absorbed the acidic gas to thereby regenerate the absorbing solution and, at the same time, recover the diffused gas, and an analysis step for calculating the iron ion and/or heavy metal ion concentrations in the absorbing solution, wherein the analysis step comprises: a step for controlling the pH of the collected absorbing solution until the ions are adsorbed to a chelate resin; a step for passing the absorbing solution through the resin and thus allowing the resin to adsorb the ions in the absorbing solution; a step for passing the regenerated acidic solution through the resin having adsorbed the ions and thus desorbing the ions and, at the same time, regenerating the resin to thereby give an ion-containing sample; and a step for quantifying the ions in the sample and calculating the concentrations of the ions in the collected absorbing solution on the basis of the quantification results.
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
B01D 53/18 - Unités d'absorptionDistributeurs de liquides
B01D 53/78 - Procédés en phase liquide avec un contact gaz-liquide
B01D 53/96 - Régénération, réactivation ou recyclage des réactifs
B01J 45/00 - Échange d'ions dans lequel se forme un complexe ou un chélateUtilisation d'une substance comme échangeur d'ions formant des complexes ou des chélatesTraitement d'une substance en vue d'améliorer ses propriétés d'échange d'ions formant des complexes ou des chélates
B01J 49/05 - Régénération ou réactivation des échangeurs d'ionsAppareillage à cet effet des lits fixes
G01N 31/00 - Recherche ou analyse des matériaux non biologiques par l'emploi des procédés chimiques spécifiés dans les sous-groupesAppareils spécialement adaptés à de tels procédés
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Hirata, Takuya
Tanaka, Hiroshi
Inui, Masayuki
Kishimoto, Shinya
Abrégé
Provided is a gas treatment device that brings a gas 101 containing particles and a cleaning fluid 102 into contact and collects the particles in the gas 101 containing particles, wherein the device is provided with: a gas cleaning column 104 having a gas cleaning part 103 for co-current contact of the gas 101 containing particles and the cleaning fluid 102; a gas cooling column 107 provided on the gas flow downstream side of the gas cleaning column 104 and having a gas cooling part 106 for counter-current contact of post-cleaning gas (gas after cleaning) 101a containing particles and a cooling fluid 105; and a gas linking path 108 linking the gas cleaning column 104 and the gas cooling column 107 on the lower side for introducing the post-cleaning gas 101a cleaned in the gas cleaning column 104 to the inside of the gas cooling column 107. The device is provided with an inclined plate 104c, provided at the connection opening of the gas linking path on the gas cleaning column side, for restraining gas flow.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Tanaka, Hiroshi
Hirata, Takuya
Kamijo, Takashi
Tsujiuchi, Tatsuya
Abrégé
At the time of reclaiming in nonvolatile component removal in which a lean extract is introduced into a reclaimer and a nonvolatile component in the lean extract is separated, a first supply water control is executed to supply at least one of reflux water from a regeneration tower, steam condensate water, and demineralized water as the first supply water into the reclaimer and also an absorbent in a reclaiming residue after stopping the introduction of the lean extract to the reclaimer is recovered, and in the initial period of finishing reclamation in which a second supply water control is executed to supply at least one of reflux water, steam condensate water, and demineralized water as the first supply water and a washing liquid including an acidic gas-absorbed liquid from a washing section of an acidic gas absorption tower is supplied as second supply water into the reclaimer, and in the later period of finishing reclamation, a third water supply control is executed to stop the supply of the second supply water and supply at least one of reflux water, steam condensate water, and demineralized water as the first supply water.
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Tanaka, Hiroshi
Hirata, Takuya
Kamijo, Takashi
Tsujiuchi, Tatsuya
Abrégé
There is used a reclaimer 106a, into which a lean extract 1003c, extracted from a lean solution regenerated in a regeneration column, is introduced and stored. An alkali agent 106c and supply water 106f are supplied into the reclaimer. A recovered water vapor discharge tube 106h for introducing discharged recovered water vapor 1003d into the regeneration column, a thermometer 110a for measuring the temperature in the reclaimer 106a, and a first pressure meter 110b for measuring the pressure in the reclaimer 106a are provided to the reclaimer 106a. When a reclaimer control device 110 stops the introduction of the lean extract 1003c into the reclaimer 106a and an absorbent is further recovered from a residue in the reclaimer 106a, the pressure in the reclaimer 106a is adjusted so as to maintain a standard temperature, which is the temperature in the reclaimer when the introduction of the leak extract 1003c into the reclaimer 106a is stopped.
B01D 53/14 - Séparation de gaz ou de vapeursRécupération de vapeurs de solvants volatils dans les gazÉpuration chimique ou biologique des gaz résiduaires, p. ex. gaz d'échappement des moteurs à combustion, fumées, vapeurs, gaz de combustion ou aérosols par absorption
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Yoshida, Kaori
Abrégé
This gas combustion treatment device (10A) performs combustion treatment of an ammonia-containing gas (12), a hydrogen cyanide-containing gas (13), and a hydrogen sulfide-containing gas (14) and is provided with: a first combustion unit (21) into which a fuel (11), ammonia-containing gas (12), hydrogen cyanide-containing gas (13), and air (25) are introduced, then subjected to reduction combustion at an air ratio of less than 1; a second combustion unit (22) that is provided downstream from the first combustion unit (21) and that performs reduction combustion of nitrogen oxides within first combustion gas (21A) transferred in from the first combustion unit (21) in a reducing atmosphere; and a third combustion unit (23) that is provided downstream from the second combustion unit (22) and in which hydrogen sulfide-containing gas (14) and air (25) are introduced into second combustion gas (22A) transferred in from the second combustion unit (22) and the result is subjected to combustion.
F23G 7/06 - Procédés ou appareils, p. ex. incinérateurs, spécialement adaptés à la combustion de déchets particuliers ou de combustibles pauvres, p. ex. des produits chimiques de gaz d'évacuation ou de gaz nocifs, p. ex. de gaz d'échappement
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Kamibayashi, Masakazu
Asano, Shin
Ito, Motofumi
Nakagawa, Minehiro
Nakamura, Nobuya
Sagara, Kenshirou
Ogata, Hiroki
Tomitaka, Tateyuki
Abrégé
This pipe inspection device comprises: at least one first roller; a first frame for rotatably supporting the at least one first roller; at least one second roller disposed facing the at least one first roller; a second frame for rotatably supporting the at least one second roller, the second frame being removably linked to the first frame; and at least one biasing member provided between the at least one second roller and the second frame, the at least one biasing member being configured so as to urge the at least one second roller toward the first roller.
G01B 21/00 - Dispositions pour la mesure ou leurs détails, où la technique de mesure n'est pas couverte par les autres groupes de la présente sous-classe, est non spécifiée ou est non significative
G01B 11/08 - Dispositions pour la mesure caractérisées par l'utilisation de techniques optiques pour mesurer des diamètres
G01B 17/02 - Dispositions pour la mesure caractérisées par l'utilisation de vibrations infrasonores, sonores ou ultrasonores pour mesurer l'épaisseur
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Takao Kenji
Yanai Noritaka
Abrégé
In the present invention, a resource management device receives transmission of a reservation request for a block section to be reserved from among a plurality of block sections included in a track traveled by a vehicle on the basis of track information which indicates the plurality of block sections and the connection relationships of the block sections. In a case where the block section to be reserved, as indicated by the reservation request, has not already been reserved by a vehicle other than the vehicle that transmitted the reservation request at the point in time when such reservation request was received, the following is recorded in a management table: that the block section to be reserved as indicated by the reservation request and a connection boundary between that block section and another block section are objects reserved for the vehicle that transmitted the reservation request.
B61L 23/14 - Dispositifs de commande, d'avertissement ou autres dispositifs de sécurité le long de la voie ou entre les véhicules ou les trains pour commander le trafic dans une direction uniquement à commande automatique
B60L 15/40 - Adaptation sur le véhicule de l'installation de commande à distance à partir d'un endroit fixe
B61L 3/12 - Dispositifs le long de la voie commandant des dispositifs sur le véhicule ou sur le train, p. ex. pour relâcher les freins ou pour manœuvrer un signal avertisseur à des endroits choisis le long de la voie, p. ex. à commande intermittente à commande électrique utilisant une induction magnétique ou électrostatiqueDispositifs le long de la voie commandant des dispositifs sur le véhicule ou sur le train, p. ex. pour relâcher les freins ou pour manœuvrer un signal avertisseur à des endroits choisis le long de la voie, p. ex. à commande intermittente à commande électrique utilisant des ondes radio
B61L 19/06 - Dispositifs d'enclenchement conjugué à fonctionnement électrique
97.
REVERSE OSMOSIS MEMBRANE PLANT AND METHOD FOR OPERATING REVERSE OSMOSIS MEMBRANE PLANT
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Ito, Yoshiaki
Takeuchi, Kazuhisa
Suzuki, Hideo
Kondo, Gaku
Tajima, Miyoko
Abrégé
The present invention is equipped with: a reverse osmosis membrane device 15 to which is connected an inflow water line L1 into which inflow water 11 flows, the reverse osmosis membrane device 15 having a reverse osmosis membrane 14 for obtaining permeated water 12 in which saline matter has been removed from the inflow water 11, and concentrated water 13 in which the saline matter in the inflow water 11 is concentrated; a branching line L11 that is branched from the inflow water line L1 and branches some of the inflow water 11 as inspection water 21; an inspection container 22 to which the branching line L11 is connected, the inspection water 21 being passed through the interior of the inspection container 22; an inspection carrier 23 of which at least one is accommodated inside the inspection container 22 and to which a biofilm derived from the inspection water 21 adheres, the inspection carrier 23 comprising a material having greater adhesion with the biofilm than does the material constituting the reverse osmosis membrane 14; and a biofilm inspection device that stops the flow of inspection water 21 to the inspection container 22 and inspects the adhesion amount of the biofilm that has adhered to the inspection carrier 23.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Ito, Yoshiaki
Takeuchi, Kazuhisa
Suzuki, Hideo
Kondo, Gaku
Tajima, Miyoko
Abrégé
A reverse osmosis membrane plant includes: a reverse osmosis membrane device 15 to which an inflow water line L1 for introducing influent water 11 is connected and which has a reverse osmosis membrane 14 for obtaining permeated water 12 obtained by removing a salt from the influent water 11 and concentrated water 13 in which the salt in the inflow water 11 is concentrated; a branch line L11 branching from the influent line L1 and branching a part of the influent water 11 as inspection water 21; an inspection container 22 to which the branch line L11 is connected and which causes the inspection water 21 to pass therethrough; at least one inspection carrier 23 which is accommodated in the inspection container 22, to which a biofilm derived from the inspection water 21 adheres, and which is made of a material having adhesiveness to the biofilm higher than that of the material of the reverse osmosis membrane 14; and a biofilm inspection device which stops the passage of the inspection water 21 to the inspection container 22 and which inspects the amount of the biofilm adhered to the inspection carrier 23.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Asanoma, Toshiaki
Yanobu, Yukihide
Kono, Hiroyuki
Uchida, Koji
Kawauchi, Akihisa
Murakami, Yoshinobu
Mukai, Yasuyuki
Abrégé
A track includes a travel path including a travel face with which travel wheels of a vehicle come into contact while rolling. The travel path includes a plurality of travel path forming units that are arranged to be adjacent to each other in a travel direction of the vehicle and of which each includes a unit travel face forming part of the travel face and a positioning unit that fixes a relative position between travel path forming units adjacent to each other.
MITSUBISHI HEAVY INDUSTRIES ENGINEERING, LTD. (Japon)
Inventeur(s)
Ukai, Nobuyuki
Takeuchi, Kazuhisa
Ito, Yoshiaki
Abrégé
An exhaust gas treatment device comprises: a flue gas desulfurization unit 13 that emits desulfurization wastewater 12 containing sulfate ions; a membrane treatment unit 16 that has a separation membrane 16a that separates a separated liquid 12A, resulting from separating solids and liquid from the desulfurization wastewater 12, into permeated water 14 in which the sulfate ion is reduced and concentrated water 15 in which the sulfate ion is concentrated; a forward osmosis membrane device 19 that has a supply solution accommodation unit 17 to accommodate, as a supply solution 14A, the permeated water 14, a drive solution accommodation unit 18 to accommodate, as a drive solution 15A, the concentrated water 15 having a higher osmotic pressure than the permeated water 14, and a water permselective forward osmosis membrane 19a disposed between the supply solution accommodation unit 17 and the drive solution accommodation unit 18; a diluted drive solution return line L4 that returns, as a desulfurization treatment liquid 11, a diluted drive solution 15B, which is diluted by water being transferred to the drive solution 15A side by way of forward osmosis, to the flue gas desulfurization unit 13 side; and a non-wastewater processing unit 21 that transmits water from the supply solution 14A by way of forward osmosis and does not drain a concentrated supply solution 14B.
B01D 53/78 - Procédés en phase liquide avec un contact gaz-liquide
B01D 61/00 - Procédés de séparation utilisant des membranes semi-perméables, p. ex. dialyse, osmose ou ultrafiltrationAppareils, accessoires ou opérations auxiliaires, spécialement adaptés à cet effet
C02F 1/44 - Traitement de l'eau, des eaux résiduaires ou des eaux d'égout par dialyse, osmose ou osmose inverse