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Thermodynamics of an ideal generalized gas: II. Means of order alpha

机译:理想广义气体的热力学:II。订单均值

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摘要

The property that power means are monotonically increasing functions of their order is shown to be the basis of the second laws not only for processes involving heat conduction, but also for processes involving deformations. This generalizes earlier work involving only pure heat conduction and underlines the incomparability of the internal energy and adiabatic potentials when expressed as powers of the adiabatic variable. In an L-potential equilibration, the final state will be one of maximum entropy, whereas in an entropy equilibration, the final state will be one of minimum L. Unlike classical equilibrium thermodynamic phase space, which lacks an intrinsic metric structure insofar as distances and other geometrical concepts do not have an intrinsic thermodynamic significance in such spaces, a metric space can be constructed for the power means: the distance between means of different order is related to the Carnot efficiency. In the ideal classical gas limit, the average change in the entropy is shown to be proportional to the difference between the Shannon and Rényi entropies for nonextensive systems that are multifractal in nature. The L potential, like the internal energy, is a Schur convex function of the empirical temperature, which satisfies Jensen's inequality, and serves as a measure of the tendency to uniformity in processes involving pure thermal conduction.
机译:动力手段是单调递增其阶次函数的性质,不仅对于涉及热传导的过程,而且对于涉及变形的过程,都是第二定律的基础。这概括了仅涉及纯热传导的早期工作,并强调了以绝热变量的幂表示时内部能量和绝热势的不可比性。在L势平衡中,最终状态将是最大熵之一,而在熵平衡中,最终状态将是最小L之一。与经典平衡热力学相空间不同,经典平衡热力学相空间在距离和距离方面都缺少内在的度量结构。其他几何概念在此类空间中不具有固有的热力学意义,可以为动力装置构建一个度量空间:不同阶数的装置之间的距离与卡诺效率有关。在理想的经典气体极限中,对于本质上是多重分形的非扩展系统,熵的平均变化与香农熵和雷尼熵之间的差异成正比。 L电位像内部能量一样,是经验温度的Schur凸函数,它满足Jensen不等式,并用作涉及纯热传导过程中均匀性趋势的量度。

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    B. LAVENDA;

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  • 年度 2005
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  • 正文语种 eng
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