Utilization Technology Development, NFP

United States of America

Back to Profile

1-12 of 12 for Utilization Technology Development, NFP Sort by
Query
Aggregations
Jurisdiction
        United States 11
        Canada 1
Date
2023 3
2022 1
2021 1
Before 2021 7
IPC Class
A47J 37/12 - Deep fat fryers, e.g. for frying fish or chips 2
D06F 58/26 - Heating arrangements, e.g. gas heating equipment 2
F23C 9/08 - Combustion apparatus characterised by arrangements for returning combustion products or flue gases to the combustion chamber for reducing temperature in combustion chamber, e.g. for protecting walls of combustion chamber 2
A23D 9/00 - Other edible oils or fats, e.g. shortenings or cooking oils 1
A23L 1/01 - General methods of cooking foods, e.g. by roasting or frying (methods specialized to particular food, see the relevant subgroups);; 1
See more
Status
Pending 3
Registered / In Force 9
Found results for  patents

1.

GRID INDEPENDENT HEATING SYSTEM

      
Application Number 18121154
Status Pending
Filing Date 2023-03-14
First Publication Date 2023-09-21
Owner UTILIZATION TECHNOLOGY DEVELOPMENT, NFP (USA)
Inventor
  • Alavandi, Sandeep
  • Abbasi, Hamid
  • Cygan, David
  • Wagner, John

Abstract

An apparatus and method for producing heat and electricity independent of an electrical grid. The apparatus includes a burner adapted to produce at least one of radiant heat, flame and hot combustion gases. A thermal-to-electric conversion device is integrated with the burner and proximate to the burner, for producing electricity. The conversion device has a first side disposed toward the at least one of radiant heat, flame and hot combustion gases and a second side disposed toward and in heat transfer contact with a liquid supply line. The apparatus is useful in water heaters. The liquid supply line provides both water to be heated and a cooling medium for the thermal-to-electric conversion device.

IPC Classes  ?

  • F24D 18/00 - Small-scale combined heat and power [CHP] generation systems specially adapted for domestic heating, space heating or domestic hot-water supply
  • F24D 103/17 - Storage tanks
  • F24D 101/60 - Thermoelectric generators, e.g. Peltier or Seebeck elements
  • F24D 103/13 - Small-scale CHP systems characterised by their heat recovery units characterised by their heat exchangers

2.

GRID INDEPENDENT HEATING SYSTEM

      
Document Number 03193059
Status Pending
Filing Date 2023-03-15
Open to Public Date 2023-09-15
Owner UTILIZATION TECHNOLOGY DEVELOPMENT, NFP (USA)
Inventor
  • Alavandi, Sandeep
  • Abbasi, Hamid
  • Cygan, David
  • Wagner, John

Abstract


An apparatus and method for producing heat and electricity independent of an
electrical grid. The apparatus includes a burner adapted to produce at least
one of radiant heat,
flame and hot combustion gases. A thermal-to-electric conversion device is
integrated with the
burner and proximate to the burner, for producing electricity. The conversion
device has a first
side disposed toward the at least one of radiant heat, flame and hot
combustion gases and a second
side disposed toward and in heat transfer contact with a liquid supply line.
The apparatus is useful
in water heaters. The liquid supply line provides both water to be heated and
a cooling medium
for the thermal-to-electric conversion device.

IPC Classes  ?

  • F23Q 9/14 - Ignition by a pilot flame with interlock with main fuel supply to permit the supply to the main burner in dependence upon existence of pilot flame using electric means, e.g. by light-sensitive elements
  • F24H 1/08 - Packaged or self-contained boilers, i.e. water heaters with control devices and pump in a single unit
  • F24H 9/00 - FLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL Details
  • H10N 10/80 - Constructional details

3.

Water recovery from heated gas mixtures

      
Application Number 17890649
Grant Number 12343677
Status In Force
Filing Date 2022-08-18
First Publication Date 2023-02-23
Grant Date 2025-07-01
Owner UTILIZATION TECHNOLOGY DEVELOPMENT, NFP (USA)
Inventor
  • Rue, David M.
  • Wagner, John C.
  • Alavandi, Sandeep

Abstract

A method and apparatus for recovering water from a heated gas mixture. The heated gas mixture is passed across one or more heat pipe heat exchangers connected in series. Each heat pipe heat exchanger includes an upper chamber separated from a lower chamber, and sealed heat pipes extending between the chambers. The heated gas mixture is passed across the lower chamber, where the heated gas mixture is cooled with the plurality of heat pipes, passing heat into the heat pipe fluid and thereby condensing water vapor to liquid water on an outside of the of heat pipes. Ambient air or other gas of a cooling temperature is passed across the upper chamber to reduce the heated temperature controlled fluid inside the plurality of heat pipes.

IPC Classes  ?

  • F28B 1/02 - Condensers in which the steam or vapour is separated from the cooling medium by walls, e.g. surface condenser using water or other liquid as the cooling medium
  • B01D 53/26 - Drying gases or vapours
  • F28B 7/00 - Combinations of two or more condensers, e.g. provision of reserve condenser

4.

Method and system of thermo-vacuum drying and processing

      
Application Number 17683748
Grant Number 11885563
Status In Force
Filing Date 2022-03-01
First Publication Date 2022-08-25
Grant Date 2024-01-30
Owner UTILIZATION TECHNOLOGY DEVELOPMENT, NFP (USA)
Inventor
  • Chudnovsky, Yaroslav
  • Buyadgie, Dmytro
  • Buyadgie, Olexiy
  • Drakhnia, Oleksii

Abstract

Methods and systems for the thermo-vacuum drying and processing of objects such as clothes. A vacuum ejector driven by high-pressure steam is employed to evacuate evaporated moisture mixed with air from a dryer vessel producing an intensification of the drying process such as can significantly reduce the energy and time requirements for the drying process and increase water utilization.

IPC Classes  ?

  • F26B 5/04 - Drying solid materials or objects by processes not involving the application of heat by evaporation or sublimation of moisture under reduced pressure, e.g. in a vacuum
  • D06F 58/26 - Heating arrangements, e.g. gas heating equipment
  • F26B 23/00 - Heating arrangements

5.

DURABLE EVEN HEAT BURNER FOR CONVEYOR CHARBROILER

      
Application Number 17113889
Status Pending
Filing Date 2020-12-07
First Publication Date 2021-06-10
Owner UTILIZATION TECHNOLOGY DEVELOPMENT, NFP (USA)
Inventor
  • Johnson, Frank
  • Scott, Shawn

Abstract

A burner assembly including a burner box with an inlet for the introduction of a combustible mixture and a block plate integrated with the burner box. The block plate assists in a desired distribution of the combustible mixture. A distribution plate overlying the block plate and a single mesh surface above the distribution plate contribute to overall improved pressure and distribution of heat across the burner assembly.

IPC Classes  ?

  • F23D 14/14 - Radiant burners using screens or perforated plates
  • F23D 14/70 - Baffles or like flow-disturbing devices
  • F23D 14/82 - Preventing flashback or blowback

6.

Method and system of thermo-vacuum drying and processing

      
Application Number 16728793
Grant Number 11261560
Status In Force
Filing Date 2019-12-27
First Publication Date 2020-07-02
Grant Date 2022-03-01
Owner UTILIZATION TECHNOLOGY DEVELOPMENT, NFP (USA)
Inventor
  • Chudnovsky, Yaroslav
  • Buyadgie, Dmytro
  • Buyadgie, Olexiy

Abstract

Methods and systems for the thermo-vacuum drying and processing of objects such as clothes. A vacuum ejector driven by high-pressure steam is employed to evacuate evaporated moisture mixed with air from a dryer vessel producing an intensification of the drying process such as can significantly reduce the energy and time requirements for the drying process and increase water utilization.

IPC Classes  ?

  • D06F 58/20 - General details of domestic laundry dryers
  • D06F 58/10 - Drying cabinets or drying chambers having heating or ventilating means
  • D06F 58/26 - Heating arrangements, e.g. gas heating equipment
  • D06F 58/30 - Drying processes
  • D06F 58/24 - Condensing arrangements

7.

Low NOx combustion devices and methods

      
Application Number 15713255
Grant Number 11226092
Status In Force
Filing Date 2017-09-22
First Publication Date 2018-03-22
Grant Date 2022-01-18
Owner UTILIZATION TECHNOLOGY DEVELOPMENT, NFP (USA)
Inventor
  • Abbasi, Hamid
  • Cygan, David
  • Alavandi, Sandeep
  • Kooy, Richard J.
  • Kalensky, David C.

Abstract

Methods and combustion devices for reducing NOx formation upon combusting oxidant with fuel to form products of combustion are provided. Such methods and device may involve mixing at least first portions of at least two fluids selected from the group of oxidant, fuel and recirculated products of combustion in at least one first conduit to form a first mixture. The first mixture is subsequently supplied to a plurality of second conduits each in direct fluid communication with the first conduit. Motive energy is utilized to aspirate at least second portions of one or more fluids selected from the group of oxidant, fuel and recirculated products of combustion in at least one second conduit to form a combustible mixture that can be subsequently burned. In one embodiment, the motive energy may be provided or result from the first mixture.

IPC Classes  ?

  • F23C 9/08 - Combustion apparatus characterised by arrangements for returning combustion products or flue gases to the combustion chamber for reducing temperature in combustion chamber, e.g. for protecting walls of combustion chamber
  • F23L 15/00 - Heating of air supplied for combustion
  • F23D 14/08 - Premix gas burners, i.e. in which gaseous fuel is mixed with combustion air upstream of the combustion zone induction type, e.g. Bunsen burner with axial outlets at the burner head
  • F23D 14/62 - Mixing devicesMixing tubes

8.

High efficiency commercial fryer

      
Application Number 14645963
Grant Number 09848735
Status In Force
Filing Date 2015-03-12
First Publication Date 2016-09-15
Grant Date 2017-12-26
Owner
  • Henny Penny Corporation (USA)
  • Utilization Technology Development NFP (USA)
Inventor
  • Shirali, Manouchehr
  • Scott, Shawn
  • Bao, Ainan
  • Glanville, Paul
  • Wilks, Stephen L.

Abstract

A fryer unit combination includes a frying fluid vat and an associated heat exchange system whereby increased or greater efficiencies and/or heat transfers can be obtained and realized. The heat exchange system includes a first heat exchanger arrangement at least in part disposed within the frying fluid vat and a second heat exchanger arrangement disposed externally to the frying fluid vat. In the first heat exchanger arrangement, a heat exchange tube is in heat flow communication with a combustion chamber wherein an associated gaseous fuel burner is at least in part housed. The second heat exchanger arrangement includes at least a first side heat exchanger disposed externally adjacent the first side of the frying fluid vat. The side heat exchanger(s) may permit intake of an oxygen-containing gas such to preheat the oxygen-containing gas prior to entrance into the combustion chamber.

IPC Classes  ?

  • A47J 37/12 - Deep fat fryers, e.g. for frying fish or chips
  • A23L 1/01 - General methods of cooking foods, e.g. by roasting or frying (methods specialized to particular food, see the relevant subgroups);;
  • A23D 9/00 - Other edible oils or fats, e.g. shortenings or cooking oils

9.

Methods and systems for reducing emissions of nitrogen oxides from ribbon burners

      
Application Number 14576565
Grant Number 10274194
Status In Force
Filing Date 2014-12-19
First Publication Date 2016-06-23
Grant Date 2019-04-30
Owner Utilization Technology Development, NFP (USA)
Inventor
  • Chudnovsky, Yaroslav
  • Zelepouga, Serguei
  • Wagner, John

Abstract

Methods and systems for improving burner, particularly ribbon burner performance, involving admixing a portion of the combustion products from the flue gas resulting from the burner to at least one of a primary and a secondary oxidizer supply to the burner. Admixing a portion of a carbon dioxide-containing flue gas combustion product formed upon combustion of a fuel gas by a ribbon burner significantly reduces NOx emissions resulting from operation of the burner.

IPC Classes  ?

  • C10L 1/12 - Inorganic compounds
  • F23C 9/08 - Combustion apparatus characterised by arrangements for returning combustion products or flue gases to the combustion chamber for reducing temperature in combustion chamber, e.g. for protecting walls of combustion chamber
  • F23D 14/02 - Premix gas burners, i.e. in which gaseous fuel is mixed with combustion air upstream of the combustion zone

10.

Porous metal foam burner

      
Application Number 14200567
Grant Number 09709265
Status In Force
Filing Date 2014-03-07
First Publication Date 2015-09-10
Grant Date 2017-07-18
Owner UTILIZATION TECHNOLOGY DEVELOPMENT, NFP (USA)
Inventor
  • Sutherland, Brian
  • Johnson, Michael
  • Sishtla, Chakravarthy

Abstract

A gas burner including a gas distribution element and a metal foam matrix burner covering the distribution element. A heat sink partially surrounds, and is spaced apart from, the metal foam matrix. The heat sink has an open end to vent exhaust emissions. The gas burner provides reduced nitrous oxide and carbon monoxide emissions and effective heat transfer modes (conduction, convection and radiation) compared to state-of-the-art burner technologies.

IPC Classes  ?

  • F23C 99/00 - Subject matter not provided for in other groups of this subclass
  • F23D 14/16 - Radiant burners using permeable blocks
  • F23C 7/00 - Combustion apparatus characterised by arrangements for air supply

11.

Method for extending the usage life of oil in a deep fat fryer

      
Application Number 12943993
Grant Number 08622079
Status In Force
Filing Date 2010-11-11
First Publication Date 2012-05-17
Grant Date 2014-01-07
Owner Utilization Technology Development, NFP (USA)
Inventor
  • Johnson, Michael Frank Gray
  • Cole, James Timothy

Abstract

A method and apparatus for extending the usage life of cooking oil used in a deep fat fryer in which the desired cooking oil usage life is determined. Upon the occurrence of a triggering event, the level of cooking oil in the vat of the deep fat fryer is varied between an upper first level and a lower second level by extraction of used cooking oil from the vat until the cooking oil level reaches the lower second level and subsequent input of fresh cooking oil until the level of cooking oil, used and fresh, in the vat reaches the upper first level.

IPC Classes  ?

  • F16K 21/18 - Self-closing valves, i.e. closing automatically after operation closed when a rising liquid reaches a predetermined level
  • F16K 31/18 - Operating meansReleasing devices actuated by fluid actuated by a float
  • A47J 27/00 - Cooking-vessels
  • A47J 37/12 - Deep fat fryers, e.g. for frying fish or chips
  • A23L 1/28 - Edible extracts or preparations of fungi (for medicinal purposes A61K)

12.

Infrared wok heater

      
Application Number 12052302
Grant Number 07926479
Status In Force
Filing Date 2008-03-20
First Publication Date 2009-09-24
Grant Date 2011-04-19
Owner Utilization Technology Development, NFP (USA)
Inventor
  • Johnson, Michael Frank Gray
  • Scott, Shawn Matthew
  • Cole, James Timothy

Abstract

An infrared heater for heating a cooking vessel, such as a Chinese wok. The heater includes a block of refractory material, which emits infrared radiation upon heating to an elevated temperature, forming an inverted frustum-shaped cavity or opening. A gas-fired burner having a burner head which produces a laterally directed flame upon ignition of a mixture of a fuel gas and a combustion oxidant supplied to the burner is disposed in the cavity or opening. A planar structure suitable for emitting infrared radiation upon heating to an elevated temperature and forming at least one centralized opening covers the upward oriented base end of the inverted frustum-shaped opening. In accordance with one embodiment, the refractory block is disposed within a cylindrical housing which supports the cooking vessel above the centralized opening during the cooking process.

IPC Classes  ?

  • F24C 3/04 - Stoves or ranges for gaseous fuels with heat produced wholly or partly by a radiant body, e.g. by a perforated plate