【2h】

The entropy concept for non-equilibrium states

机译:非平衡态的熵概念

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摘要

In earlier work, we presented a foundation for the second law of classical thermodynamics in terms of the entropy principle. More precisely, we provided an empirically accessible axiomatic derivation of an entropy function defined on all equilibrium states of all systems that has the appropriate additivity and scaling properties, and whose increase is a necessary and sufficient condition for an adiabatic process between two states to be possible. Here, after a brief review of this approach, we address the question of defining entropy for non-equilibrium states. Our conclusion is that it is generally not possible to find a unique entropy that has all relevant physical properties. We do show, however, that one can define two entropy functions, called S− and S+, which, taken together, delimit the range of adiabatic processes that can occur between non-equilibrium states. The concept of comparability of states with respect to adiabatic changes plays an important role in our reasoning.
机译:在较早的工作中,我们根据熵原理为经典热力学第二定律奠定了基础。更准确地说,我们提供了在所有系统的所有平衡态上定义的熵函数的经验可及的公理推导,该熵函数具有适当的可加性和缩放性质,并且其增加是两个状态之间可能发生绝热过程的必要和充分条件。在这里,在对此方法进行简要回顾之后,我们将解决为非平衡态定义熵的问题。我们的结论是,通常不可能找到具有所有相关物理特性的唯一熵。但是,我们确实表明,可以定义两个熵函数,分别称为S-和S +,它们合起来界定了非平衡状态之间可能发生的绝热过程的范围。关于绝热变化的国家可比性概念在我们的推理中起着重要作用。

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