4.7 Article

Coefficient of performance for a low-dissipation Carnot-like refrigerator with nonadiabatic dissipation

期刊

PHYSICAL REVIEW E
卷 88, 期 6, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevE.88.062115

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资金

  1. National Natural Science Foundation of China [11265010, 11375045, 11365015, 11191240252]
  2. State Key Programs of China [2012CB921604]
  3. Jiangxi Provincial Natural Science Foundation, China [20132BAB212009]
  4. MICIN (Spain) [FIS2010-17147FEDER]

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We study the coefficient of performance (COP) and its bounds for a Carnot-like refrigerator working between two heat reservoirs at constant temperatures T-h and T-c, under two optimization criteria chi and Omega. In view of the fact that an adiabatic process usually takes finite time and is nonisentropic, the nonadiabatic dissipation and the finite time required for the adiabatic processes are taken into account by assuming low dissipation. For given optimization criteria, we find that the lower and upper bounds of the COP are the same as the corresponding ones obtained from the previous idealized models where any adiabatic process is undergone instantaneously with constant entropy. To describe some particular models with very fast adiabatic transitions, we also consider the influence of the nonadiabatic dissipation on the bounds of the COP, under the assumption that the irreversible entropy production in the adiabatic process is constant and independent of time. Our theoretical predictions match the observed COPs of real refrigerators more closely than the ones derived in the previous models, providing a strong argument in favor of our approach.

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