Dual Brayton Cycle Gas Turbine Pressurized Fluidized Bed Combustion Power Plant Concept

JOURNAL OF ENGINEERING FOR GAS TURBINES AND POWER-TRANSACTIONS OF THE ASME(1998)

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摘要
High generating efficiency has compelling economic and environmental benefits for electric power plants. There are particular incentives to develop more efficient and cleaner coal-fired power plants in order to permit use of the world's most abundant and secure energy source. This paper presents a newly conceived pow er plant design, the Dual Brayton Cycle Gas Turbine PFBC, that yields 45 percent net generating efficiency and fires on a wide range of fuels with minimum pollution, of which coal is a particularly intriguing target for its first application. The DBC-GT design allows power plants based on the state-of-the-art PFBC technology to achieve substantially higher generating efficiencies, while simultaneously providing modern gas turbine and related heat exchanger technologies access to the large coal poll er generation market.
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fire,heat exchanger,fossil fuels,fluidized bed combustion,design,heat exchangers,nitrogen oxide,power stations,air pollution,combined cycle,brayton cycle,thermal power plant,pollution,coal,electric power,power generation,power plant,performance
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