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Exergoeconomic performance analyses of an endoreversible intercooled regenerative Brayton cogeneration-type model

机译:内可逆中冷蓄热式布雷顿热电联产模型的能效经济分析

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摘要

The exergoeconomic performance of an endoreversible intercooled regenerative Brayton cogeneration plant coupled to variable-temperature heat reservoirs is investigated using finite-time thermodynamics. The analytical formulae for the dimensionless profit rate and exergy efficiency of the cogeneration plant are deduced. The two cases with fixed and variable total pressure ratios are discussed. When the total pressure ratio is variable, by means of numerical calculations, the optimal intercooling pressure ratios corresponding to the optimal profit rate and exergy efficiency are obtained, respectively. The maximum profit rate, the maximum exergy efficiency and the corresponding optimal total pressure ratios are obtained. The effects of the design parameters on the exergoeconomic performance of the cogeneration plant are analysed. The results show that there exist two optimal consumer-side temperatures which lead to a double-maximum profit rate and a double-maximum exergy efficiency.
机译:使用有限时间热力学研究了与变温热库耦合的内可逆中冷可再生布雷顿热电厂的能效经济性能。推导了热电厂的无量纲利润率和火用效率的解析公式。讨论了总压比固定和可变的两种情况。当总压力比可变时,通过数值计算,分别获得与最佳收益率和火用效率相对应的最佳中冷压力比。获得最大利润率,最大火用效率和相应的最佳总压力比。分析了设计参数对热电联产系统能效的影响。结果表明,存在两个最佳的消费者端温度,这导致双最大利润率和双最大火用效率。

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