Claims
- 1. A power plant comprising:
(a) a reformer for converting hydrocarbon fuel into a fuel mixture consisting mainly of hydrogen and carbon monoxide; (b) a high temperature fuel cell comprising an air duct with an inlet and an outlet and a fuel channel with corresponding inlet and outlet; (c) a distributor having one inlet and two outlets; (d) a combustion chamber with a fuel inlet, air inlet, and outlet; (e) a volume expansion engine having an inlet for supplying a working fluid; wherein the outlet of said reformer is connected to the inlet of fuel channel of said high temperature fuel cell; the outlet of said fuel channel of high temperature fuel cell is connected to the inlet of said distributor, the first outlet of which is connected to fuel inlet of said combustion chamber and the second outlet of which is connected to the inlet of the reformer; the outlet of air duct of said high temperature fuel cell is connected to the air supply inlet of said combustion chamber; the outlet of said combustion chamber is connected to said volume expansion engine.
- 2. The power plant of claim 1 wherein said combustion chamber is connected to the reformer through a heat exchanger intended for heating said reformer;
- 3. The power plant of claim 1 wherein said volume expansion engine is mechanically connected to an electric generator.
- 4. The power plant of claim 1 wherein said high temperature fuel cell contains an additional heat exchanger, which is connected to a device intended for heating the fuel fed into the reformer and to another device intended for heating the air supplied to the high temperature fuel cell.
- 5. The power plant of claim 1 wherein an additional pump is installed between said distributor and the inlet of said reformer.
- 6. A power plant comprising:
(a) a reformer for converting hydrocarbon fuel into a fuel mixture consisting mainly of hydrogen and carbon monoxide; (b) a high temperature fuel cell comprising an air duct with an inlet and an outlet and a fuel channel with corresponding inlet and outlet; (c) a distributor having one inlet and two outlets; (d) a combustion chamber with a fuel inlet, air inlet, and outlet; (e) a volume expansion engine having an inlet for supplying a working fluid; (f) first regulating valve, the inlet of which is connected to air supply inlet; (g) second regulating valve 6 the inlet of which is connected to the inlet of hydrocarbon fuel, wherein the outlet of said reformer is connected to the inlet of fuel channel of said high temperature fuel cell; the outlet of said fuel channel of high temperature fuel cell is connected to the inlet of said distributor, the first outlet of which is connected to the fuel inlet of said combustion chamber and the second outlet of which is connected to the inlet of the reformer; the outlet of the air duct of said high temperature fuel cell is connected to the air supply inlet of said combustion chamber; the outlet of said combustion chamber is connected to said volume expansion engine; the outlet of said first regulating valve is connected to the air supply inlet of the combustion chamber; the outlet of said second regulating valve is connected to an additional fuel inlet of said combustion chamber.
- 7. The power plant of claim 6 wherein said combustion chamber is connected to the reformer through a heat exchanger intended for heating said reformer.
- 8. The power plant of claim 6 wherein said volume expansion engine is mechanically connected to an electric generator.
- 9. The power plant of claim 6 wherein said high temperature fuel cell contains an additional heat exchanger, which is connected to a device intended for heating the fuel fed into the reformer and to another device intended for heating the air supplied to high temperature fuel cell.
- 10. The power plant of claim 6 wherein an additional pump is installed between said distributor and the inlet of said reformer.
- 11. A hybrid power apparatus comprising:
a high temperature fuel cell for producing electrical energy, a volume expansion heat engine for producing mechanical energy, a combustion chamber coupled to receive at least a portion of the unconsumed fuel from said fuel cell and apply high pressure combusted gases to said engine, a reformer for feeding fuel to said fuel cell, and a source of hydrocarbon fuel for selectively feeding variable amounts of fuel to said reformer and said combustion chamber.
- 12. A power apparatus as set forth in claim 11, further including
a distributor distributing fuel cell exhaust fuel selectively to said reformer and said combustion chamber.
- 13. A power apparatus as set forth in claim 12, wherein said distributor varies the ratio of exhaust fuel fed to the reformer and combustion chamber in accordance with predetermined power requirements desired from said fuel cell and engine.
- 14. A power apparatus as set forth in claim 11, wherein said fuel source applies hydrocarbon fuel to said combustion chamber for rapidly increasing the power output of said engine.
- 15. A power apparatus as set forth in claim 11, wherein said engine comprises at least one piston riding in a cylinder.
- 16. A power apparatus as set forth in claim 11, further including an electric generator driven by said engine.
- 17. A power apparatus as set forth in claim 11, wherein
the nominal power rating of said fuel cell is less than 50% of the nominal power rating of said engine.
RELATED APPLICATION
[0001] Priority is claimed to U.S. Provisional Patent Application Ser. No. 60/260,863, filed Jan. 10, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60260863 |
Jan 2001 |
US |