Claims
- 1. A liquid cooled fuel cell stack comprising:
one or more fuel cell modules, each fuel cell module comprising at least one membrane electrode assembly; one or more cooling plates, each cooling plate comprising a plurality of cooling channels each having a cooling channel inlet and a cooling channel outlet; a first manifold box having a first manifold box inlet and communicating with cooling channel inlets via one or more first manifold box outlets; and a first diffuser positioned within said first manifold box having a) a first diffuser inlet communicating with said first manifold box inlet so as to receive all flow of a liquid coolant into said first manifold box inlet, and b) a plurality of first diffuser outlets; wherein a substantially uniform coolant fluid pressure is maintained in said first manifold box outside the diffuser.
- 2. The liquid cooled fuel cell stack according to claim 1 additionally comprising a second manifold box, wherein said first and second manifold boxes are mounted on opposite sides of said liquid cooled fuel cell stack.
- 3. The liquid cooled fuel cell stack according to claim 2 wherein said first and second manifold boxes are two-chamber manifold boxes each comprising an inlet chamber and an outlet chamber.
- 4. The liquid cooled fuel cell stack according to claim 3 wherein said outlet chambers communicate with cooling channel outlets via manifold box collecting ports.
- 5. The liquid cooled fuel cell stack according to claim 1 having heat insulating material on substantially all of at least four sides.
- 6. The liquid cooled fuel cell stack according to claim 2 having heat insulating material on substantially all of at least four sides.
- 7. The liquid cooled fuel cell stack according to claim 3 having heat insulating material on substantially all of at least four sides.
- 8. The liquid cooled fuel cell stack according to claim 4 having heat insulating material on substantially all of at least four sides.
- 9. A liquid cooled fuel cell stack comprising:
one or more fuel cell modules, each fuel cell module comprising at least one membrane electrode assembly; one or more cooling plates, each cooling plate comprising a plurality of cooling channels each having a cooling channel inlet and a cooling channel outlet; a first manifold box having a first manifold box inlet and communicating with cooling channel inlets via one or more first manifold box outlets; and a first diffuser positioned within said first manifold box having a) a first diffuser inlet communicating with said first manifold box inlet so as to receive all flow of a liquid coolant into said first manifold box inlet, and b) a plurality of first diffuser outlets distributed evenly with respect to said cooling channel inlets.
- 10. The liquid cooled fuel cell stack according to claim 9 additionally comprising a second manifold box, wherein said first and second manifold boxes are mounted on opposite sides of said liquid cooled fuel cell stack.
- 11. The liquid cooled fuel cell stack according to claim 10 wherein said first and second manifold boxes are two-chamber manifold boxes each comprising an inlet chamber and an outlet chamber.
- 12. The liquid cooled fuel cell stack according to claim 11 wherein said outlet chambers communicate with cooling channel outlets via manifold box collecting ports.
- 13. The liquid cooled fuel cell stack according to claim 9 having heat insulating material on substantially all of at least four sides.
- 14. The liquid cooled fuel cell stack according to claim 10 having heat insulating material on substantially all of at least four sides.
- 15. The liquid cooled fuel cell stack according to claim 11 having heat insulating material on substantially all of at least four sides.
- 16. The liquid cooled fuel cell stack according to claim 12 having heat insulating material on substantially all of at least four sides.
- 17. A liquid cooled fuel cell stack comprising one or more cooling plates, each cooling plate comprising a first plurality of cooling channels each having a cooling channel inlet and a cooling channel outlet and a second plurality of cooling channels each having a cooling channel inlet and a cooling channel outlet, wherein cooling channel inlets of said first plurality of cooling channels and cooling channel outlets of said second plurality of cooling channels are on a first face of said cooling plate wherein cooling channel outlets of said first plurality of cooling channels and cooling channel inlets of said second plurality of cooling channels are on a second face of said cooling plate.
- 18. The liquid cooled fuel cell stack according to claim 17 additionally comprising a first manifold communicating with said cooling channel inlets of said first plurality of cooling channels; a second manifold communicating with said cooling channel outlets of said first plurality of cooling channels; a third manifold communicating with said cooling channel inlets of said second plurality of cooling channels; and a fourth manifold communicating with said cooling channel outlets of said second plurality of cooling channels.
- 19. The liquid cooled fuel cell stack according to claim 17 wherein said cooling plates are compression plates.
- 20. The liquid cooled fuel cell stack according to claim 18 wherein said cooling plates are compression plates.
Government Interests
[0001] This invention was made with Government support under Cooperative Agreement DE-FC02-99EE50582 awarded by DOE. The Government has certain rights in this invention.