IP Library Granted Patent US 8,076,039
Granted Patent B2
US 8,076,039 · App. 11/506,686 · Granted Dec 13, 2011

Small volume, fuel cell inlet fuel gas distributor having low pressure drop

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Quick Facts
Patent No.
US 8,076,039
App. No.
11/506,686
Granted
Dec 13, 2011
Kind
B2
Abstract

In a fuel cell stack, an inlet fuel distributor ( 15, 31, 31 a, 31 b ) comprises a plurality of fuel distributing passageways ( 17 - 23, 40 - 47, 64 ) of substantially equal length and equal flow cross section to uniformly distribute fuel cell inlet fuel from a fuel supply conduit ( 13, 14, 50 ) to a fuel inlet manifold ( 28 ). The conduits may be either channels ( 40 - 47; 64 ) formed within a plate ( 39 ) or tubes ( 17 - 23 ). The channels may have single exits ( 65 ) or double exits ( 52, 53 ) into the fuel inlet manifold.

Claims (47)

1. A fuel cell fuel inlet apparatus for a plurality of fuel cells in a stack, comprising:

a single fuel supply conduit;

a surface configured to flow fuel into the fuel cells; and

a plurality of mutually independent fuel distributing passageways, each said passageway having an inlet fluidically coupled directly to said fuel supply conduit and each said passageway having at least one exit configured to direct fuel to said surface, each said passageway configured to conduct, from said fuel supply conduit to said surface, substantially the same amount of fuel per unit of time as each other passageway, and each said passageway configured to conduct fuel from said fuel supply conduit to said surface in substantially the same amount of time as each other passageway.

2. Apparatus according to claim 1 wherein:

each of said at least one exits is configured to direct said fuel to a corresponding different portion of said surface.

3. Apparatus according to claim 1 wherein:

each of said at least one exits is configured to direct said fuel to a corresponding different portion of said surface wherein said fuel is spread in dimensions not parallel with said passageways.

4. Apparatus according to claim 3 wherein:

said fuel distributing passageways comprise cross sections which are proportional to length.

5. Apparatus according to claim 1 wherein:

said plurality of fuel distributing passageways are configured having substantially the same length and substantially the same flow cross section wherein said fuel is simultaneously and uniformly deliverable to all of said fuel cells.

6. Apparatus according to claim 1 wherein:

said plurality of fuel distributing passageways are each configured having the same total length and flow cross section and configured to flow said fuel through each said plurality of fuel distributing passageways at the same flow rate as that in each other passageway, with a simultaneous fuel front at all of the fuel cells.

7. Apparatus according to claim 1 wherein said surface comprises a portion of a fuel inlet manifold.

8. Apparatus according to claim 1 wherein:

said plurality of fuel distributing passageways comprises a plurality of channels formed in a relatively thin plate, and each of said plurality of fuel distributing passageways are configured having substantially the same length, number of turns and flow cross section as each other one of said passageways.

9. Apparatus according to claim 8 wherein:

said plate further comprises an inlet manifold; and

each said channel comprises at least one of a first exit and a second exit into said inlet manifold.

10. Apparatus according to claim 9 wherein:

at least one of said first exit and a second exit is configured to mix the flow of fluid in said manifold.

11. Apparatus according to claim 8 wherein at least one of said plurality of channels is configured to prevent the accumulation of liquid.

12. Apparatus according to claim 8 wherein said plurality of fuel distributing passageways comprises at least one of a liquid drain hole and liquid flow channel configured to prevent obstruction of fuel flow by liquid.

13. Apparatus according to claim 1 wherein said surface is substantially flat.

14. A fuel cell stack comprising:

a plurality of fuel cells; and

a fuel cell fuel inlet apparatus according to claim 1 .

15. A fuel cell stack having a fuel inlet apparatus, said stack comprising:

a stack of fuel cells, said fuel cells aligned along a substantially straight first line;

a single fuel supply conduit;

a plurality of mutually independent fuel distributing passageways, each said passageway having an inlet fluidically coupled directly to said fuel supply conduit, each said passageway having at least one exit aligned along a substantially straight second line in proximity with and parallel to said first line, each said exit configured to direct fuel in the vicinity of a corresponding different group of said fuel cells, each said passageway configured to conduct, from said fuel supply conduit to said fuel cells, substantially the same amount of fuel per unit of time as each other passageway, and each said passageway configured to conduct fuel from said fuel supply conduit to said fuel cells in substantially the same amount of time as each other passageway.

16. A fuel cell stack having a fuel inlet apparatus, said stack comprising:

a stack of fuel cells, said fuel cells aligned along a substantially straight first line;

a single fuel supply conduit;

a plurality of mutually independent fuel distributing passageways, each said passageway having an inlet fluidically coupled directly to said fuel supply conduit, each said passageway having at least one exit aligned along a substantially straight second line in proximity with and parallel to said first line, each said exit configured to direct fuel in the vicinity of a corresponding different group of said fuel cells, said passageways configured to flow fuel through each of said passageways at the same flow rate as the flow rate in each other one of said passageways and with a simultaneous fuel front at said second line.

17. A method of providing inlet fuel to a plurality of fuel cells in a stack, said method comprising:

conducting, from a single fuel supply conduit through a plurality of mutually independent fuel distributing passageways, to each of said plurality of fuel cells, substantially the same amount of fuel as to each other one of said fuel cells, and conducting fuel from said fuel supply conduit through said plurality of fuel distributing passageways to each of said plurality of fuel cells in substantially the same amount of time as to each other one of said fuel cells.

18. A fuel cell stack having a fuel inlet apparatus, said stack comprising:

a plurality of fuel cells;

a single fuel supply conduit; and

a plurality of mutually independent fuel distributing passageways, each said passageway having an inlet fluidically coupled directly to said fuel supply conduit, each said passageway having at least one exit aligned to direct flow of fuel substantially parallel with flow of fuel directed by others of said exits, each said exit configured to direct fuel in the vicinity of a corresponding different group of said fuel cells wherein fuel is spread among said fuel cells, each said passageway configured to conduct, from said fuel supply conduit to said fuel cells, substantially the same amount of fuel per unit of time as each other passageway, and each said passageway configured to conduct fuel from said fuel supply conduit to said fuel cells in substantially the same amount of time as each other passageway.

19. A fuel cell apparatus comprising:

a plurality of fuel cells in a stack;

a single fuel supply conduit;

a surface configured to flow fuel into each of the fuel cells; and

a plurality of mutually independent fuel distributing passageways, each said passageway having an inlet fluidically coupled directly to said fuel supply conduit and each said passageway having at least one exit configured to direct fuel to said surface, each said passageway configured to conduct, from said fuel supply conduit to said surface, substantially the same amount of fuel per unit of time as each other passageway, and each said passageway configured to conduct fuel from said fuel supply conduit to said surface in substantially the same amount of time as each other passageway.

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 15, 2016
From: WHITON, JOHN H.; WANG, YU; REISER, CARL A.; HIRKO, JR., GEORGE S.
To: UTC FUEL CELLS, LLC
Reel/Frame 037499/0949 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 15, 2016
From: UNITED TECHNOLOGIES CORPORATION
To: BALLARD POWER SYSTEMS INC.
Reel/Frame 037533/0941 →
CORRECTION OF ASSIGNEE ADDRESS PREVIOUSLY RECORDED AT REEL 035772, FRAME 0192. Recorded Jul 2, 2015
From: BALLARD POWER SYSTEMS INC.
To: AUDI AG
Reel/Frame 036407/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 26, 2015
From: BALLARD POWER SYSTEMS INC.
To: AUDI AG
Reel/Frame 035772/0192 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 19, 2013
From: UTC POWER CORPORATION
To: UNITED TECHNOLOGIES CORPORATION
Reel/Frame 031033/0325 →
CONVERSION TO CORPORATION Recorded Sep 29, 2011
From: UTC FUEL CELLS, LLC
To: UTC POWER CORPORATION
Reel/Frame 026999/0156 →