Claims
- 1. A fuel cell assembly, comprising:
a fuel cell stack; a first end plate associated with the fuel cell stack; and a first heatable element adapted to heat the first end plate.
- 2. The fuel cell assembly of claim 1, wherein the first heatable element is different than the first end plate, the first heatable element disposed between the fuel cell stack and the first end plate.
- 3. The fuel cell assembly of claim 1, wherein the first heatable element is adapted to be heated electrically.
- 4. The fuel cell assembly of claim 1, wherein the first heatable element comprises:
a temperature sensor; and a resistive thermal device.
- 5. The fuel cell assembly of claim 1, wherein the first end plate is heatable.
- 6. The fuel cell assembly of claim 5, wherein the first end plate comprises:
a body defining a flow channel.
- 7. The fuel cell assembly of claim 6, wherein the flow channel defines an inlet portion in fluid communication with an outlet coolant manifold extending through the fuel cell stack.
- 8. The fuel cell assembly of claim 6, wherein
the body defines a surface engageable with an end of the fuel cell stack, and the flow channel is defined on the surface and substantially corresponds to an active area of the end of the fuel cell stack.
- 9. The fuel cell assembly of claim 6, wherein the body defines an opening extending therethrough, the opening in fluid communication with an inlet manifold adapted to conduct a reactant to the fuel cell stack.
- 10. The fuel cell assembly of claim 9, wherein
the body defines a surface engageable with an end of the fuel cell stack, and the flow channel is defined on the surface and substantially corresponds to an active area of the end of the fuel cell stack.
- 11. The fuel cell assembly of claim 9, wherein the flow channel extends about the opening.
- 12. The fuel cell assembly of claim 9, wherein
the body defines a surface engageable with an end of the fuel cell stack, and the flow channel is defined on the surface, substantially corresponds to an active area of the end of the fuel cell stack, and extends about the opening.
- 13. The fuel cell assembly of claim 6, wherein the body defines
a first opening extending through the body, the first opening in fluid communication with an inlet fuel manifold adapted to conduct fuel to the fuel cell stack, and a second opening extending through the body, the second opening in fluid communication with an inlet oxidant manifold adapted to conduct oxidant to the fuel cell stack.
- 14. The fuel cell assembly of claim 13, wherein
the body defines a surface engageable with an end of the fuel cell stack, and the flow channel is defined on the surface and substantially corresponds to an active area of the end of the fuel cell stack.
- 15. The fuel cell assembly of claim 13, wherein the flow channel extends about the first and second openings.
- 16. The fuel cell assembly of claim 13, wherein
the body defines a surface engageable with an end of the fuel cell stack, and the flow channel is defined on the surface, corresponding substantially to an active area of the end of the fuel cell stack, and extends about the first and second openings.
- 17. The fuel cell assembly of claim 1, wherein the first end plate comprises heating elements.
- 18. The fuel cell assembly of claim 1, further comprising:
a second end plate associated with the fuel cell stack; and a second heatable element adapted to heat the second end plate.
- 19. The fuel cell assembly of claim 18, wherein the second end plate is heatable.
- 20. The fuel cell assembly of claim 18, wherein the second end plate comprises a body defining a flow channel.
- 21. A method of operating a fuel cell system comprising a fuel cell stack and a first end plate associated with a first end of the fuel cell stack, the method comprising:
heating the first end plate.
- 22. The method of claim 21, wherein heating the first end plate comprises heating a first heating element different than the first end plate.
- 23. The method of claim 22, wherein the first heating element is adjacent to the first end plate.
- 24. The method of claim 22, wherein the first heating element is disposed between the first end plate and a fuel cell stack.
- 25. The method of claim 21, further comprising:
flowing a fluid through a flow channel defined by the first end plate.
- 26. The method of claim 25, wherein the fluid is heated.
- 27. The method of claim 21, further comprising:
heating the first end plate with a heating element disposed on the first end plate.
- 28. The method of claim 21, wherein
the heating is performed electrically.
- 29. The method of claim 21, further comprising:
heating a second end plate associated with the fuel cell stack.
- 30. The method of claim 29, wherein heating the second end plate comprises heating a second heating element different than the second end plate.
- 31. The method of claim 30, wherein the second heating element is adjacent to the second end plate.
- 32. The method of claim 30, wherein the second heating element is between the second end plate and the fuel cell stack.
- 33. A method of operating a fuel cell system comprising a fuel cell stack and a first end plate associated with the fuel cell stack, the method comprising:
monitoring an operating parameter of the fuel cell system; and adjusting a temperature of the first end plate based on the operating parameter.
- 34. The method of claim 33, wherein adjusting the temperature comprises heating a first heatable element.
- 35. The method of claim 33, wherein adjusting the temperature comprises flowing a fluid through the first end plate.
- 36. The method of claim 33, further comprising:
adjusting a temperature of a second end plate associated with the fuel cell stack based on the operating parameter.
- 37. The method of claim 33, wherein the operating parameter is a power output of the fuel cell system.
- 38. The method of claim 33, wherein the operating parameter is a temperature of the fuel cell stack.
- 39. The method of claim 34, wherein the operating parameter is a temperature of the first heatable element.
- 40. The method of claim 33, wherein the method is performed as a feedback loop.
- 41. A fuel cell assembly, comprising:
a fuel cell stack having a plurality of outer peripheries; and a heatable element adapted to heat an outer periphery of the fuel cell stack.
- 42. The fuel cell assembly of claim 41, wherein the outer periphery is an end of the fuel cell stack.
- 43. The fuel cell assembly of claim 4, wherein the outer periphery is a side of the fuel cell stack.
- 44. The fuel cell assembly of claim 41, wherein the heatable element is adapted to heat a plurality of outer peripheries.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part application of and claims priority to U.S. application Ser. No. 09/552,452, filed on Apr. 18, 2000, and entitled “Heatable End Plate, Fuel Cell Assembly, And Method For Operating A Fuel Cell Assembly”, the entire contents of which are hereby incorporated by reference.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09552452 |
Apr 2000 |
US |
Child |
09843521 |
Apr 2001 |
US |