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Irreversibility and entropy production in transport phenomena, III - Principle of minimum integrated entropy production including nonlinear responses

机译:运输现象中的不可逆性和熵产生,III-包括非线性响应在内的最小积分熵产生的原理

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摘要

A new variational principle of steady states is found by introducing an integrated type of energy dissipation (or entropy production) instead of instantaneous energy dissipation. This new principle is valid both in linear and nonlinear transport phenomena. Prigogine's dream has now been realized by this new general principle of minimum "integrated" entropy production (or energy dissipation). This new principle does not contradict with the Onsager-Prigogine principle of minimum instantaneous entropy production in the linear regime, but it is conceptually different from the latter which does not hold in the nonlinear regime. Applications of this theory to electric conduction, heat conduction, particle diffusion and chemical reactions are presented. The irreversibility (or positive entropy production) and long time tail problem in Kubo's formula are also discussed in the Introduction and last section. This constitutes the complementary explanation of our theory of entropy production given in the previous papers (M. Suzuki, Physica A 390 (2011) 1904 and M. Suzuki, Physica A 391 (2012) 1074) and has given the motivation of the present investigation of variational principle.
机译:通过引入一种综合类型的能量耗散(或熵产生)而不是瞬时能量耗散,可以找到一种新的稳态变分原理。这一新原理在线性和非线性传输现象中均有效。 Prigogine的梦想现在已经通过最小的“集成”熵产生(或能量耗散)这一新的通用原理得以实现。这个新原理与线性状态下的最小瞬时熵产生的Onsager-Prigogine原理并不矛盾,但是在概念上与后者在非线性状态下不成立。介绍了该理论在导电,导热,粒子扩散和化学反应中的应用。引言和最后一节还讨论了久保公式中的不可逆性(或正熵产生)和长时间尾巴问题。这构成了先前论文(M.Suzuki,Physica A 390(2011)1904和M.Suzuki,Physica A 391(2012)1074)中给出的熵产生理论的补充解释,并给出了本研究的动机变分原理。

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