IP Library Granted Patent US 11,022,068
Granted Patent B2
US 11,022,068 · App. 16/878,744 · Granted Jun 1, 2021

Monolithic heater bodies

Inventors: Joshua Tyler Mook (Cincinnati, OH); Kevin Michael VandeVoorde (Cincinnati, OH); Aigbedion Akwara (Cincinnati, OH); Michael Robert Notarnicola (Cincinnati, OH); Jason Joseph Bellardi (Fairfield, OH); Mohammed El Hacin Sennoun (West Chester, OH); Mohamed Osama (Garching, DE); Zachary William Nagel (Liberty Township, OH)
Assignee: General Electric Company
F02G1/055F02G1/04F02G1/044F02G1/047F02G1/05F02G1/053F02G1/057F28D9/04F28F7/02F28F13/003F28F13/14F02G1/0435F02G2243/00F02G2244/50F02G2244/52F02G2250/00F02G2254/10F02G2258/10F02G2270/80F02G2280/10F28D2021/0026F28F2210/10F28F2250/04
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Quick Facts
Patent No.
US 11,022,068
App. No.
16/878,744
Granted
Jun 1, 2021
Kind
B2
Abstract

A monolithic heater body may include a combustor body, a hot-side heat exchanger body, and an eductor body. The combustor body may define a combustion chamber and a conditioning conduit circumferentially surrounding the combustion chamber. The conditioning conduit may fluidly communicate with the combustion chamber at a distal portion of the combustion chamber. The hot-side heat exchanger body may define a hot-side heat exchanger that includes a heating fluid pathway fluidly communicating with a proximal portion of the combustion chamber. The eductor body may define an eduction pathway fluidly communicating with a downstream portion of the heating fluid pathway and a proximal portion of the conditioning conduit.

Claims (31)

1. A monolithic heater body, comprising:

a combustor body defining a combustion chamber and a conditioning conduit circumferentially surrounding the combustion chamber, the conditioning conduit fluidly communicating with the combustion chamber at a distal portion of the combustion chamber;

a hot-side heat exchanger body defining a hot-side heat exchanger comprising a heating fluid pathway fluidly communicating with a proximal portion of the combustion chamber; and

an eductor body defining an eduction pathway fluidly communicating with a downstream portion of the heating fluid pathway and a proximal portion of the conditioning conduit;

wherein the hot-side heat exchanger body defines a plurality of heating fluid pathways fluidly communicating with the proximal portion of the combustion chamber, the plurality of heating fluid pathways concentrically spiraling about a perimeter of the combustion chamber.

2. The monolithic heater body of claim 1 , wherein the combustion chamber, the heating fluid pathway, the eduction pathway, and the conditioning conduit together define at least a portion of a recirculation pathway configured to recirculate combustion gas through the combustion chamber.

3. The monolithic heater body of claim 1 , comprising:

a fuel injector body defining a portion of the monolithic heater body or operably coupled to the monolithic heater body, the fuel injector body comprising a combustor cap defining a nozzle port configured to receive a fuel nozzle, the combustor cap disposed axially adjacent to a distal portion of the conditioning conduit.

4. The monolithic heater body of claim 3 , wherein the combustor cap defines at least a portion of a recirculation pathway configured to recirculate combustion gas through the combustion chamber.

5. The monolithic heater body of claim 1 , wherein respective ones of the plurality of heating fluid pathways comprise a spiral pathway.

6. The monolithic heater body of claim 1 , wherein the hot-side heat exchanger body comprises a heat transfer region having a heat transfer relationship with the plurality of heating fluid pathways.

7. The monolithic heater body of claim 1 , wherein the hot-side heat exchanger body comprises a plurality of heat transfer regions respectively disposed about a semiannular portion of the hot-side heat exchanger body, wherein respective ones of the plurality of heat transfer regions have a heat transfer relationship with a corresponding semiannular portion of the plurality of heating fluid pathways.

8. The monolithic heater body of claim 1 , comprising:

a working-fluid body defining a working-fluid pathway fluidly communicating between a heat input region and a heat extraction region.

9. The monolithic heater body of claim 8 , wherein the working-fluid body defines a plurality of heat transfer regions, respective ones of the plurality of heat transfer regions comprising a plurality of working-fluid pathways fluidly communicating between a respective one of a plurality of heat input regions and a respective one of a plurality of heat extraction regions.

10. The monolithic heater body of claim 1 , wherein the hot-side heat exchanger body comprises a heat transfer region having a heat transfer relationship with a working-fluid body, the working-fluid body defining a working-fluid pathway fluidly communicating between a heat input region and a heat extraction region.

11. The monolithic heater body of claim 10 , wherein the heat input region comprises a piston body defining a piston chamber and/or wherein the heat extraction region comprises a regenerator body defining a regenerator conduit.

12. The monolithic heater body of claim 1 , wherein the eductor body defines a motive pathway fluidly communicating with the proximal portion of the conditioning conduit.

13. The monolithic heater body of claim 1 , comprising:

an intake air body defining an intake air pathway fluidly communicating with a motive pathway defined by the eductor body, the motive pathway fluidly communicating with the proximal portion of the conditioning conduit.

14. The monolithic heater body of claim 1 , comprising:

a heat recuperator body defining at least a portion of an exhaust pathway and at least a portion of an intake air pathway, the exhaust pathway having a heat transfer relationship with the intake air pathway.

15. The monolithic heater body of claim 1 , wherein the monolithic heater body has an annular configuration.

16. The monolithic heater body of claim 1 , comprising:

an inner wall and an outer wall; and

a cooling jacket defined between the inner wall and the outer wall;

wherein the cooling jacket fluidly communicates with an intake air pathway and a proximal portion of the combustion chamber.

17. The monolithic heater body of claim 1 , comprising:

a thermal expansion joint disposed annularly or semi-annularly about a longitudinal axis of the combustion chamber.

18. The monolithic heater body of claim 1 , wherein the monolithic heater body defines at least a portion of an additively manufactured monolithic body or an additively manufactured monolithic body-segment.

19. The monolithic heater body of claim 1 , wherein the monolithic heater body defines at least a portion of a closed-cycle engine.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 12, 2023
From: GENERAL ELECTRIC COMPANY
To: HYLIION HOLDINGS CORP
Reel/Frame 064226/0545 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 12, 2020
From: MOOK, JOSHUA TYLER; VANDEVOORDE, KEVIN MICHAEL; AKWARA, AIGBEDION; NOTARNICOLA, MICHAEL ROBERT; BELLARDI, JASON JOSEPH; SENNOUN, MOHAMMED EL HACIN; OSAMA, MOHAMED; NAGEL, ZACHARY WILLIAM
To: GENERAL ELECTRIC COMPANY
Reel/Frame 052923/0736 →
Continuity (6)
Provisional Application 62850701 · May 21, 2019
Provisional Application 62850692 · May 21, 2019
Provisional Application 62850678 · May 21, 2019
Provisional Application 62850623 · May 21, 2019
Provisional Application 62850599 · May 21, 2019
Related Publication 20200370509A1 · Nov 26, 2020