Zhoushan Institute of Calibration and Testing for Quality and Technology Supervision

Chine

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        États-Unis 6
        International 6
Date
2025 (AACJ) 1
2024 3
2023 3
2022 1
2021 3
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Classe IPC
G01F 17/00 - Procédés ou appareils pour la détermination de la capacité des récipients ou des cavités, ou du volume des corps solides 5
G01S 13/86 - Combinaisons de systèmes radar avec des systèmes autres que radar, p. ex. sonar, chercheur de direction 2
B08B 9/087 - Nettoyage de récipients, p. ex. de réservoirs par des procédés impliquant l'utilisation d'outils, p. ex. de brosses, de grattoirs 1
B25J 11/00 - Manipulateurs non prévus ailleurs 1
B25J 19/00 - Accessoires adaptés aux manipulateurs, p. ex. pour contrôler, pour observerDispositifs de sécurité combinés avec les manipulateurs ou spécialement conçus pour être utilisés en association avec ces manipulateurs 1
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Statut
En Instance 2
Enregistré / En vigueur 10
Résultats pour  brevets

1.

OVERPRESSURE GAS CONDENSATION RECOVERY DEVICE BASED ON LNG COLD ENERGY POWER GENERATION SYSTEM

      
Numéro d'application CN2023127088
Numéro de publication 2025/050479
Statut Délivré - en vigueur
Date de dépôt 2023-10-27
Date de publication 2025-03-13
Propriétaire
  • ZHOUSHAN INSTITUTE OF CALIBRATION AND TESTING FOR QUALITY AND TECHNOLOGY SUPERVISION (Chine)
  • ENN (ZHOUSHAN) LNG CO., LTD. (Chine)
Inventeur(s)
  • Chen, Xianlei
  • He, Jianhui
  • Wang, Bohong
  • Hao, Huadong
  • Wang, Bin
  • Liu, Jianfeng
  • Tao, Hengcong
  • Shi, Haolei
  • Li, Panfeng
  • Ou, Jiguang

Abrégé

The present invention relates to the technical field of LNG cold energy power generation. Disclosed is an overpressure gas condensation recovery device based on an LNG cold energy power generation system, comprising: a tank body; and a condensation cavity arranged at the bottom of the tank body, LNG condensate being stored in the condensation cavity and used for condensing BOG gas, wherein the condensation cavity comprises a vertical hollow pipe mounted in the tank body, and a connecting mechanism is arranged at the bottom of the vertical hollow pipe. The shape and position design of the vertical hollow pipe enables gas to be in initial contact with the condensate in the flowing process of the gas in the vertical hollow pipe; due to a pressure difference, gas at the inlet can continuously enter the vertical hollow pipe, and after entering a conical pipe, the gas is distributed along the cavity shape of the conical pipe and spreads downwards, so that the contact time between the gas and the condensate is increased without expanding the diffusion area of the gas after entering the condensate, allowing for full utilization of the condensate in a limited volume condensation cavity.

Classes IPC  ?

  • F28B 7/00 - Combinaisons de plusieurs condenseurs, p. ex. dans le cas d’un condenseur de réserve

2.

VOLUME MEASUREMENT DEVICE FOR SPHERICAL TANK AND MEASUREMENT METHOD THEREOF

      
Numéro d'application CN2023117420
Numéro de publication 2024/234506
Statut Délivré - en vigueur
Date de dépôt 2023-09-07
Date de publication 2024-11-21
Propriétaire ZHOUSHAN INSTITUTE OF CALIBRATION AND TESTING FOR QUALITY AND TECHNOLOGY SUPERVISION (Chine)
Inventeur(s)
  • Hao, Huadong
  • Chen, Junxue
  • Chen, Xianlei
  • Shi, Haolei
  • Wu, Zenan
  • Li, Cunjun
  • Xu, Huizhong
  • Wang, Yeyong
  • Shen, Zhengqian
  • Li, Liang
  • Zhang, Yan

Abrégé

The present invention relates to the technical field of spherical tank volume calibration, and provides a volume measurement device for a spherical tank and a measurement method thereof. The present invention comprises a base, four supporting rods, a driving mechanism, a rotating disc and a counterweight mechanism; a circular first fixed seat is fixedly arranged on the base; a first through hole is formed in the base; a second through hole is formed in the first fixed seat; the four supporting rods are arranged on the first fixed seat in the circumferential direction; sliding rods are slidably arranged on the lower side surfaces of the supporting rods, and limiting plates are arranged at the outer ends of the sliding rods; the driving mechanism can make the four sliding rods move in a radial direction at the same time; the rotating disc is arranged on the first fixed seat; a third through hole is formed in the rotating disc; a winding drum is rotatably arranged on the rotating disc, and a steel tape is wound on the winding drum; a balance disc is arranged at a free end of the steel tape; laser range finders are arranged on the two opposite sides of the balance disc; and the counterweight mechanism can keep the balance disc relatively stable. According to the present invention, the equatorial inner diameter can be measured by using laser range finders without manually entering a spherical tank, so that the safety and reliability are achieved.

Classes IPC  ?

  • G01F 17/00 - Procédés ou appareils pour la détermination de la capacité des récipients ou des cavités, ou du volume des corps solides

3.

CONDENSATION-RECOVERY DEVICE FOR OVERPRESSURE GAS BASED ON LIQUEFIED NATURAL GAS (LNG) COLD ENERGY

      
Numéro d'application 18534204
Statut En instance
Date de dépôt 2023-12-08
Date de la première publication 2024-03-28
Propriétaire
  • ZHOUSHAN INSTITUTE OF CALIBRATION AND TESTING FOR QUALITY AND TECHNOLOGY SUPERVISION (Chine)
  • ENN (Zhoushan) LNG Co., Ltd. (Chine)
Inventeur(s)
  • Chen, Xianlei
  • He, Jianhui
  • Wang, Bohong
  • Hao, Huadong
  • Wang, Bin
  • Liu, Jianfeng
  • Tao, Hengcong
  • Shi, Haolei
  • Li, Panfeng
  • Ou, Jiguang

Abrégé

A condensation-recovery device for overpressure gas based on liquefied natural gas (LNG) cold energy, including a tank body and a condensation cavity provided on a bottom thereof. LNG is stored in the condensation cavity to condense boil-off gas (BOG). The condensation cavity includes a vertical hollow tube arranged in the tank body, and an engagement mechanism is provided on a bottom of the vertical hollow tube. The vertical hollow tube is configured such that the gas can experience preliminary contact with the LNG when flowing therein, and the gas will continuously enter the vertical hollow tube under the action of pressure difference. After entering the conical tube, the gas will be distributed along the cavity of the conical tube to spread downward, so as to increase a contact time of the gas and the LNG while avoiding expanding diffusion area of the gas after entering the LNG.

Classes IPC  ?

  • F17C 9/04 - Récupération de l'énergie thermique

4.

DEVICE AND METHOD FOR MEASURING VOLUME OF SPHERICAL TANK

      
Numéro d'application 18504860
Statut En instance
Date de dépôt 2023-11-08
Date de la première publication 2024-02-29
Propriétaire ZHOUSHAN INSTITUTE OF CALIBRATION AND TESTING FOR QUALITY AND TECHNOLOGY SUPERVISION (Chine)
Inventeur(s)
  • Hao, Huadong
  • Chen, Junxue
  • Chen, Xianlei
  • Shi, Haolei
  • Wu, Zenan
  • Li, Cunjun
  • Xu, Huizhong
  • Wang, Yeyong
  • Shen, Zhengqian
  • Li, Liang
  • Zhang, Yan

Abrégé

A device for measuring volume of spherical tanks, includes a base, four supporting rods, a driving mechanism, a rotating disc and a counterweight mechanism. The base is provided with a first through hole and a circular fixing base with a second through hole. The supporting rods are circumferentially provided on the fixing base, with a sliding rod slidably provided at the lower side. An outer end of the sliding rod is provided with a limiting plate. The driving mechanism can drive the sliding rods to move simultaneously in radial directions. The rotating disc with a third through hole is arranged on the fixing base, and is rotatably provided with a reel around which a steel tape is wound. A free end of the steel tape is provided with a balancing disc whose opposite sides are provided with laser rangefinders. The counterweight mechanism can keep the balancing disc stable.

Classes IPC  ?

  • G01F 17/00 - Procédés ou appareils pour la détermination de la capacité des récipients ou des cavités, ou du volume des corps solides

5.

TRACK FUSION METHOD AND APPARATUS FOR UNMANNED SURFACE VEHICLE

      
Numéro d'application CN2022114785
Numéro de publication 2023/138053
Statut Délivré - en vigueur
Date de dépôt 2022-08-25
Date de publication 2023-07-27
Propriétaire ZHOUSHAN INSTITUTE OF CALIBRATION AND TESTING FOR QUALITY AND TECHNOLOGY SUPERVISION (Chine)
Inventeur(s)
  • Li, Cunjun
  • Wang, Hairong
  • Li, Liang
  • Wang, Yeyong
  • Hao, Huadong
  • Wang, Hongbo
  • Lu, Fangfang
  • Mao, Kunyu

Abrégé

A track fusion method and apparatus for an unmanned surface vehicle, which achieves complementary advantages in the perception of maritime targets by means of information fusion, increases a matching calculation speed, saves calculation resources, and has higher credibility. The method comprises: obtaining perception information of an unmanned surface vehicle, the perception information comprising GPS data information and radar data information (102); performing data preprocessing on the radar data information to obtain target radar information (104); constructing a track association model, and performing track association on the GPS data information and the target radar information by using the track association model (106); and constructing a fusion data weight distribution model, and performing track fusion on the GPS data information and the target radar information associated therewith by using the fusion data weight distribution model (108).

Classes IPC  ?

  • G01S 13/60 - Systèmes de détermination de la vitesse ou de la trajectoireSystèmes de détermination du sens d'un mouvement dans lesquels l'émetteur et le récepteur sont montés sur l'objet mobile, p. ex. pour déterminer la vitesse par rapport au sol, l'angle de dérive, le trajet au sol
  • G01S 13/86 - Combinaisons de systèmes radar avec des systèmes autres que radar, p. ex. sonar, chercheur de direction

6.

Track fusion method and device for unmanned surface vehicle

      
Numéro d'application 18059420
Numéro de brevet 12339347
Statut Délivré - en vigueur
Date de dépôt 2022-11-28
Date de la première publication 2023-04-06
Date d'octroi 2025-06-24
Propriétaire ZHOUSHAN INSTITUTE OF CALIBRATION AND TESTING FOR QUALITY AND TECHNOLOGY SUPERVISION (Chine)
Inventeur(s)
  • Li, Cunjun
  • Wang, Hairong
  • Li, Liang
  • Wang, Yeyong
  • Hao, Huadong
  • Wang, Hongbo
  • Lu, Fangfang
  • Mao, Kunyu

Abrégé

A track fusion method for an unmanned surface vehicle includes: (a) obtaining perception information of the unmanned surface vehicle, where the perception information includes GPS data information and radar data information; (b) pre-processing the radar data information to obtain target radar information; (c) constructing a track correlation model; and performing track correlation between the GPS data information and the target radar information based on the track correlation model; and (d) constructing a fusion data weight allocation model; and subjecting between the GPS data information and the target radar information correlated therewith to track fusion based on the fusion data weight allocation model. This application further provides a track fusion device for unmanned surface vehicles.

Classes IPC  ?

  • G01S 13/72 - Systèmes radar de poursuiteSystèmes analogues pour la poursuite en deux dimensions, p. ex. combinaison de la poursuite en angle et de celle en distance, radar de poursuite pendant l'exploration
  • G01S 13/86 - Combinaisons de systèmes radar avec des systèmes autres que radar, p. ex. sonar, chercheur de direction
  • G05D 1/00 - Commande de la position, du cap, de l'altitude ou de l'attitude des véhicules terrestres, aquatiques, aériens ou spatiaux, p. ex. utilisant des pilotes automatiques

7.

MOVING DEVICE FOR THREE-DIMENSIONAL SCANNER

      
Numéro d'application CN2022114752
Numéro de publication 2023/035961
Statut Délivré - en vigueur
Date de dépôt 2022-08-25
Date de publication 2023-03-16
Propriétaire ZHOUSHAN INSTITUTE OF CALIBRATION AND TESTING FOR QUALITY AND TECHNOLOGY SUPERVISION (Chine)
Inventeur(s)
  • Chen, Xianlei
  • Chen, Junxue
  • Li, Cunjun
  • Hao, Huadong
  • Shi, Haolei
  • Wu, Zenan
  • Wang, Yeyong
  • Li, Liang
  • Liu, Huan
  • Hong, Hui
  • Wang, Yingying
  • Liu, Chenghao

Abrégé

A moving device for a three-dimensional scanner (2), which belongs to the technical field of auxiliary measurement apparatuses. The device comprises a device body (1), a moving mechanism, a first round pipe (3), a driving mechanism, and a fixing mechanism, wherein a connecting rod (21) is vertically and fixedly provided on an upper side face of the device body (1); the moving mechanism can drive the device body (1) to move; the first round pipe (3) is sleeved on an outer side of the connecting rod (21); a fixing sleeve (32) is vertically and fixedly provided on an inner side wall of the first round pipe (3); a sliding rod (321) is inserted into the fixing sleeve (32); a lower end of the sliding rod (321) is fixedly connected to the device body (1), and an upper end of the sliding rod (321) extends below the three-dimensional scanner (2), and a second top plate (322) is fixedly provided at an end portion of the sliding rod; and the driving mechanism can drive the first round pipe (3) to vertically slide up and down, and when the first round pipe (3) slides upwards to an outer side of the three-dimensional scanner (2), the fixing mechanism can fix the first round pipe (3). The device can quickly move the three-dimensional scanner (2) to a designated position in a storage tank to prevent the three-dimensional scanner (2) from being damaged due to collision, and is safe and reliable.

Classes IPC  ?

  • G01B 11/24 - Dispositions pour la mesure caractérisées par l'utilisation de techniques optiques pour mesurer des contours ou des courbes
  • F16M 11/42 - Appuis ou tréteaux en tant que supports pour appareils ou objets avec dispositions pour mouvoir le support

8.

Ship cabin loading capacity measuring method and apparatus thereof

      
Numéro d'application 17168243
Numéro de brevet 11970246
Statut Délivré - en vigueur
Date de dépôt 2021-02-05
Date de la première publication 2022-03-17
Date d'octroi 2024-04-30
Propriétaire Zhoushan Institute of Calibration and Testing for Quality and Technology Supervision (Chine)
Inventeur(s)
  • Hao, Huadong
  • Li, Cunjun
  • Chen, Xianlei
  • Shi, Haolei
  • Wu, Ze'Nan
  • Chen, Junxue
  • Shen, Zhengqian
  • Wang, Yingying
  • Xu, Huizhong

Abrégé

A ship cabin loading capacity measurement method and apparatus thereof, comprises: acquiring point cloud measurement data of a ship cabin; optimizing the point cloud measurement data according to a predetermined point cloud data processing rule, and generating optimized ship cabin point cloud data; calculating said ship cabin point cloud data with a predetermined loading capacity calculation rule, and getting ship cabin loading capacity data. According to the ship cabin loading capacity measurement method of the present invention, the point cloud measurement data can be acquired by a lidar, and processing the point cloud measurement data of the ship cabin with a predetermined point cloud data processing law and a computation law, and as the point cloud data processing law and the computation law can be deployed in a computer device in advance, after point cloud measurement data acquisition, loading capacity of a ship cabin can be acquired quickly and precisely.

Classes IPC  ?

  • B63B 25/00 - Installations de chargement, p. ex. pour le rangement ou l'arrimageNavires spécialisés à cet effet
  • B63B 27/30 - Aménagement des équipements de bord pour l'embarquement ou le débarquement des cargaisons ou des passagers pour le transfert entre des navires en mer ou entre un navire et un poste situé en mer
  • G01F 17/00 - Procédés ou appareils pour la détermination de la capacité des récipients ou des cavités, ou du volume des corps solides
  • G06V 20/59 - Contexte ou environnement de l’image à l’intérieur d’un véhicule, p. ex. concernant l’occupation des sièges, l’état du conducteur ou les conditions de l’éclairage intérieur

9.

LNG TANK BOTTOM VOLUME MEASUREMENT DEVICE AND METHOD THEREFOR

      
Numéro d'application CN2020091247
Numéro de publication 2021/031633
Statut Délivré - en vigueur
Date de dépôt 2020-05-20
Date de publication 2021-02-25
Propriétaire ZHOUSHAN INSTITUTE OF CALIBRATION AND TESTING FOR QUALITY AND TECHNOLOGY SUPERVISION (Chine)
Inventeur(s)
  • Mao, Kunyu
  • Li, Cunjun
  • Chen, Xianlei
  • Hao, Huadong
  • Shi, Haolei
  • Wu, Zenan
  • Chen, Junxue
  • Shen, Zhengqian

Abrégé

An LNG tank bottom volume measurement device and a method therefor, the method comprising: placing a laser level at the center of a circle at the bottom of an LNG tank, and automatically dividing the tank bottom into eight regions having eight points of intersection; and placing a measurement device at one of vertical lines thereof, such that a laser-generated vertical line is located at a center position on the measurement device. The measurement device is moved such that the height of each measurement point on the tank bottom can be measured, thus providing accurate measurement data and saving time and effort. The invention solves the problem in which conventional tank bottom volume measurement results in inaccurate readings, and requires a lot of time and effort.

Classes IPC  ?

  • G01F 23/68 - Indication ou mesure du niveau des liquides ou des matériaux solides fluents, p. ex. indication en fonction du volume ou indication au moyen d'un signal d'alarme par des flotteurs du type à flotteur libre en utilisant des moyens d'indication actionnés électriquement

10.

Wall-climbing robot for measuring capacity of vertical metal tanks

      
Numéro d'application 16876831
Numéro de brevet 11906342
Statut Délivré - en vigueur
Date de dépôt 2020-05-18
Date de la première publication 2021-02-18
Date d'octroi 2024-02-20
Propriétaire Zhoushan Institute Of Calibration And Testing For Quality And Technology Supervision (Chine)
Inventeur(s)
  • Chen, Xianlei
  • Li, Cunjun
  • Hao, Huadong
  • Shi, Haolei
  • Huang, Haocai
  • Wu, Yiping

Abrégé

A wall-climbing robot for measuring capacity of vertical metal tanks includes a robot body including a chassis, a casing, and wheels. The robot body further includes: an attraction unit including a plurality of magnets; a measurement unit including a bendable ruler provided on the chassis and protruding from a top of the casing; the rust removal unit including a rust removing bucket provided at a front side of the robot body, and a driver for the lifting and lowering of the rust removing bucket; and a control unit including a microcontroller, a posture detector, an obstacle detector, an attraction detector, and a distance sensor. The wall-climbing robot of the present invention leaves no indentation on a surface of the metal tank, and is not affected by the rusts formed on the surface.

Classes IPC  ?

  • G01F 17/00 - Procédés ou appareils pour la détermination de la capacité des récipients ou des cavités, ou du volume des corps solides
  • G01B 3/02 - Règles avec des échelles ou des marques pour la lecture directe
  • G01R 33/02 - Mesure de la direction ou de l'intensité de champs magnétiques ou de flux magnétiques
  • G01S 15/08 - Systèmes pour mesurer la distance uniquement
  • G01S 17/08 - Systèmes déterminant les données relatives à la position d'une cible pour mesurer la distance uniquement
  • B08B 9/087 - Nettoyage de récipients, p. ex. de réservoirs par des procédés impliquant l'utilisation d'outils, p. ex. de brosses, de grattoirs
  • B25J 11/00 - Manipulateurs non prévus ailleurs

11.

WALL-CLIMBING ROBOT FOR CAPACITY VERIFICATION OF VERTICAL METAL TANK

      
Numéro d'application CN2020108344
Numéro de publication 2021/027800
Statut Délivré - en vigueur
Date de dépôt 2020-08-11
Date de publication 2021-02-18
Propriétaire
  • ZHOUSHAN INSTITUTE OF CALIBRATION AND TESTING FOR QUALITY AND TECHNOLOGY SUPERVISION (Chine)
  • ZHEJIANG UNIVERSITY (Chine)
Inventeur(s)
  • Chen, Xianlei
  • Wu, Yiping
  • Shi, Haolei
  • Li, Cunjun
  • Hao, Huadong
  • Huang, Haocai

Abrégé

A wall-climbing robot for capacity verification of a vertical metal tank, belonging to the technical field of volume measurement of a large metal container, and comprising a robot body. The robot body comprises a chassis (11) and a housing (13). Driving wheels (16) are provided on two sides of the chassis (11). The robot body is provided with: an adsorption unit comprising a plurality of magnets (22) for adsorbing the wall of the metal tank, the magnets (22) being connected into a mesh by means of a connector (21) and movably arranged at the bottom of the chassis (11); a measuring unit comprising a folding ruler (53) provided on the chassis (11) and exposed out of the top of the housing (13); a derusting unit comprising a derusting bucket (33) provided at the front end of the robot body and a driver (31) for driving the derusting bucket (33) to lift up and down; and a control unit comprising a microcontroller (42), a posture detector (43), an obstacle detector (45), a suction detector (46) used for detecting the adsorption force of the magnets, a distance sensor (54) used for measuring the distance between the top of the housing and the wall of the metal tank, and a communication device (41). According to the wall-climbing robot, the problem of leaving indentations on the surface of the metal tank is avoided, and the problem that the robot is affected by the rust on the wall of the metal tank is avoided.

Classes IPC  ?

  • B25J 5/00 - Manipulateurs montés sur roues ou sur support mobile
  • G01B 11/12 - Dispositions pour la mesure caractérisées par l'utilisation de techniques optiques pour mesurer des diamètres des diamètres intérieurs
  • B25J 19/00 - Accessoires adaptés aux manipulateurs, p. ex. pour contrôler, pour observerDispositifs de sécurité combinés avec les manipulateurs ou spécialement conçus pour être utilisés en association avec ces manipulateurs

12.

Oil tank measurement method and system based on laser point cloud analysis

      
Numéro d'application 16567154
Numéro de brevet 11333541
Statut Délivré - en vigueur
Date de dépôt 2019-09-11
Date de la première publication 2020-09-17
Date d'octroi 2022-05-17
Propriétaire Zhoushan Institute of Calibration and Testing for Quality and Technology Supervision (Chine)
Inventeur(s)
  • Li, Cunjun
  • Hao, Huadong
  • Chen, Xianlei
  • Ren, Feiming
  • Shi, Haolei
  • Wu, Zenan

Abrégé

The invention provides an oil tank measurement method and system based on laser point cloud analysis, comprising: acquiring point cloud data inside an oil tank, which is collected by a laser measurement device; separating point cloud data of a main body of the oil tank from point cloud data of a plug, to acquire the point cloud data of the main body of the oil tank; calculating, based on Gauss mapping, an axis for the point cloud data of the main body of the oil tank; determining any one first plane perpendicular to the axis, and projecting a point cloud of the main body onto the first plane to obtain a point cloud of a projected cross-section of the tank body on the first plane; multi-segment fitting the point cloud of the projected cross-section of the tank body; and calculating a volume according to a result of multi-segment fitting.

Classes IPC  ?

  • G01F 17/00 - Procédés ou appareils pour la détermination de la capacité des récipients ou des cavités, ou du volume des corps solides
  • G01S 17/89 - Systèmes lidar, spécialement adaptés pour des applications spécifiques pour la cartographie ou l'imagerie
  • G01S 7/48 - Détails des systèmes correspondant aux groupes , , de systèmes selon le groupe