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Carnot-Like Heat Engines Versus Low-Dissipation Models

机译:卡诺式热机与低耗散模型

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摘要

In this paper, a comparison between two well-known finite time heat engine models is presented: the Carnot-like heat engine based on specific heat transfer laws between the cyclic system and the external heat baths and the Low-Dissipation model where irreversibilities are taken into account by explicit entropy generation laws. We analyze the mathematical relation between the natural variables of both models and from this the resulting thermodynamic implications. Among them, particular emphasis has been placed on the physical consistency between the heat leak and time evolution on the one side, and between parabolic and loop-like behaviors of the parametric power-efficiency plots. A detailed analysis for different heat transfer laws in the Carnot-like model in terms of the maximum power efficiencies given by the Low-Dissipation model is also presented.
机译:本文对两种著名的有限时间热机模型进行了比较:基于循环系统与外部热浴之间的特定传热规律的卡诺式热机,以及采用不可逆性的低耗散模型考虑到明确的熵产生定律。我们分析了两个模型的自然变量之间的数学关系,并由此得出了热力学的含义。其中,特别侧重于一方面的热泄漏和时间演化之间的物理一致性,以及参数功率效率图的抛物线形和环状行为之间的物理一致性。本文还针对低耗散模型给出的最大功率效率,对类卡诺模型中的不同传热规律进行了详细分析。

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