Heat engines at optimal power: Low-dissipation versus endoreversible model

Heat engines at optimal power: Low-dissipation versus endoreversible model The low-dissipation model and the endoreversible model of heat engines are two of the most commonly studied models of machines in finite-time thermodynamics. In this paper we compare the performance characteristics of these two models under optimal power output. We point out a basic equivalence between them, in the linear response regime. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Physical Review E American Physical Society (APS)

Heat engines at optimal power: Low-dissipation versus endoreversible model

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Heat engines at optimal power: Low-dissipation versus endoreversible model

Abstract

The low-dissipation model and the endoreversible model of heat engines are two of the most commonly studied models of machines in finite-time thermodynamics. In this paper we compare the performance characteristics of these two models under optimal power output. We point out a basic equivalence between them, in the linear response regime.
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Publisher
The American Physical Society
Copyright
Copyright © ©2017 American Physical Society
ISSN
1539-3755
eISSN
550-2376
D.O.I.
10.1103/PhysRevE.96.012151
Publisher site
See Article on Publisher Site

Abstract

The low-dissipation model and the endoreversible model of heat engines are two of the most commonly studied models of machines in finite-time thermodynamics. In this paper we compare the performance characteristics of these two models under optimal power output. We point out a basic equivalence between them, in the linear response regime.

Journal

Physical Review EAmerican Physical Society (APS)

Published: Jul 27, 2017

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