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Finite-time exergoeconomic performance optimization for a universal steady-flow endoreversible heat pump model

机译:通用稳态流内可逆热泵模型的有限时间能工经济性能优化

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The exergoeconomic performance of a class of universal steady-flow endoreversible heat pump cycle model consisting of one heat-absorbing branch, two heat-releasing branches and two adiabatic branches is optimized by using the theory of finite-time thermodynamics. The analytical formulae about the profit rate versus the working fluid temperature ratio as well as the coefficient of performance (COP) versus the working fluid temperature ratio are derived. The effects of price ratio on the profit rate versus COP as well as on the finite-time exergoeconomic performance bound of the universal heat pump cycle are discussed by numerical examples. The results obtained herein include the performance characteristics of endoreversible Otto, Atkinson, Diesel, Dual, Brayton and Carnot heat pump cycles.
机译:利用有限时间热力学理论,优化了由一个吸热分支,两个放热分支和两个绝热分支组成的一类通用稳态流内可逆热泵循环模型的能效性能。推导了关于利润率与工作液温度比以及性能系数(COP)与工作液温度比的分析公式。通过数值算例讨论了价格比对利润率与COP的关系以及对通用热泵循环的有限时间能效经济性能的影响。本文获得的结果包括内可逆的奥托,阿特金森,柴油,双重,布雷顿和卡诺热泵循环的性能特征。

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