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.
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IPN, Escuela Super Computo, Dept Ciencias Bas, Mexico City 07738, DF, MexicoIPN, Escuela Super Computo, Dept Ciencias Bas, Mexico City 07738, DF, Mexico
Barranco-Jimenez, Marco A.
Sanchez-Salas, Norma
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IPN, Escuela Super Fis & Matemat, Dept Fis, Mexico City 07738, DF, MexicoIPN, Escuela Super Computo, Dept Ciencias Bas, Mexico City 07738, DF, Mexico
Sanchez-Salas, Norma
Angulo-Brown, Fernando
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IPN, Escuela Super Fis & Matemat, Dept Fis, Mexico City 07738, DF, MexicoIPN, Escuela Super Computo, Dept Ciencias Bas, Mexico City 07738, DF, Mexico
机构:
Graduate School, China Academy of Engineering Physics, Beijing,100193, China
Department of Physics, Peking University, Beijing,100871, ChinaGraduate School, China Academy of Engineering Physics, Beijing,100193, China
Zhou, Tan-Ji
Ma, Yu-Han
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Graduate School, China Academy of Engineering Physics, Beijing,100193, China
School of Physics and Astronomy, Beijing Normal University, Beijing,100875, ChinaGraduate School, China Academy of Engineering Physics, Beijing,100193, China
Ma, Yu-Han
Sun, C.P.
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Graduate School, China Academy of Engineering Physics, Beijing,100193, ChinaGraduate School, China Academy of Engineering Physics, Beijing,100193, China