科技报告详细信息
Pressurized Solid Oxide Fuel Cell/Gas Turbine Power System
Lundberg, W. L. ; Israelson, G. A. ; Moritz, R. R. ; Veyo, S. E. ; Holmes, R. A. ; Zafred, P. R. ; King, J. E. ; Kothmann, R. E.
Federal Energy Technology Center (U.S.)
关键词: 30 Direct Energy Conversion;    Gas Turbines;    Solid Electrolyte Fuel Cells;    24 Power Transmission And Distribution;    Electricity;   
DOI  :  10.2172/772401
RP-ID  :  DE--AC26-98FT40355--01
RP-ID  :  AC26-98FT40355
RP-ID  :  772401
美国|英语
来源: UNT Digital Library
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【 摘 要 】

Power systems based on the simplest direct integration of a pressurized solid oxide fuel cell (SOFC) generator and a gas turbine (GT) are capable of converting natural gas fuel energy to electric power with efficiencies of approximately 60% (net AC/LHV), and more complex SOFC and gas turbine arrangements can be devised for achieving even higher efficiencies. The results of a project are discussed that focused on the development of a conceptual design for a pressurized SOFC/GT power system that was intended to generate 20 MWe with at least 70% efficiency. The power system operates baseloaded in a distributed-generation application. To achieve high efficiency, the system integrates an intercooled, recuperated, reheated gas turbine with two SOFC generator stages--one operating at high pressure, and generating power, as well as providing all heat needed by the high-pressure turbine, while the second SOFC generator operates at a lower pressure, generates power, and provides all heat for the low-pressure reheat turbine. The system cycle is described, major system components are sized, the system installed-cost is estimated, and the physical arrangement of system components is discussed. Estimates of system power output, efficiency, and emissions at the design point are also presented, and the system cost of electricity estimate is developed.

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