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On the Evolution of the Definition of Entropy From Clausius to Today

机译:从克劳修斯到今天熵定义的演变

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摘要

Carnot analyzed an engine operating between two reservoirs. Through a peculiar mode of reasoning, he found the correct optimum shaft work performed during a cyclic change of state of the engine. Clausius justified Carnot's result by enunciating two laws of thermodynamics, and introducing the concept of entropy as a ratio of heat and temperature of a thermodynamic equilibrium state. fly appropriate algebraic manipulations, in this paper we express Carnot's optimum shaft work in terms of available energies or exergies of the end states of the reservoirs, and Clausius' entropy in terms of energy and available energy. Next, we consider the optimum shaft work performed during a cyclic change of state of an engine operating between a reservoir, and a system with fixed-amounts of constituents, and fixed-volume but variable temperature. We express the optimum shaft work in terms of the available energies of the end states, and Clausius' entropy in terms of energy and available energy. Formally, the entropy expression is identical to that found for the Carnot engine except for the difference in end states. Finally, we consider the optimum shaft work performed during a cyclic change of state of an engine operating between system A initially in any state A_l (thermodynamic equilibrium or not) and reservoir R. We call this optimum generalized available energy with respect to R, and use it together with energy to define an entropy of any state A_l. Again we observe that the expression for entropy is formally identical to the two given earlier except for the difference in end states.
机译:卡诺分析了一个在两个油箱之间运行的发动机。通过一种特殊的推理方式,他找到了在发动机状态周期性变化期间执行的正确的最佳轴功。克劳修斯(Clausius)通过阐明两个热力学定律,并引入熵的概念来证明卡诺的结果,熵是热力学平衡态的热量与温度之比。通过适当的代数运算,在本文中,我们根据可用能量或储层最终状态的能值表示卡诺特的最佳轴功,并根据能量和可用能量表示克劳修斯的熵。接下来,我们考虑在储油罐和具有固定成分数量,固定体积但温度可变的系统之间运行的发动机状态周期性变化期间执行的最佳轴功。我们根据最终状态的可用能量来表达最佳轴功,并根据能量和可用能量来表达克劳修斯熵。形式上,除了最终状态的差异外,熵表达式与卡诺引擎的表达式相同。最后,我们考虑在系统A最初处于任何状态A_1(无论是否处于热力学平衡)和储油器R之间的状态循环变化期间执行的最佳轴功。将其与能量一起使用以定义任何状态A_1的熵。再次,我们观察到熵的表达式在形式上与前面给出的两个相同,除了最终状态不同。

著录项

  • 来源
    《Journal of Energy Resources Technology》 |2015年第2期|021010.1-021010.5|共5页
  • 作者

    Elias P. Gyftopoulos;

  • 作者单位

    Departments of Mechanical Engineering and of Nuclear Engineering Massachusetts Institute of Technology, Cambridge, MA 02139;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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