论连续物理学中的热力学第二定律

Thermo Pub Date : 2024-06-11 DOI:10.3390/thermo4020015
C. Giorgi, A. Morro
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引用次数: 0

摘要

本文重新审视了连续物理学中第二定律的表述,并研究了新的利用方法。熵通量和熵产生都用构成方程来表示。在三维环境中,矢量和张量是有序的,它们在表示第二定律的不等式中通过内积出现;只要以速率型形式考虑所寻求的方程,文献中非常少见的表示公式就能产生一般解。接下来,熵的产生作为一种构成函数,可以产生更多物理上可接受的模型。此外,熵产生的构成特性还在速率型材料的演化方程中产生了一个额外的基本项,就像杜恒滞后模型一样。热力学一致的滞变材料的这一特征在弹性塑料材料中得到了体现。研究表明,表示公式允许更多的非局部特性,而构成性熵产生则证明对滞后建模至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the Second Law of Thermodynamics in Continuum Physics
The paper revisits the formulation of the second law in continuum physics and investigates new methods of exploitation. Both the entropy flux and the entropy production are taken to be expressed by constitutive equations. In three-dimensional settings, vectors and tensors are in order and they occur through inner products in the inequality representing the second law; a representation formula, which is quite uncommon in the literature, produces the general solution whenever the sought equations are considered in rate-type forms. Next, the occurrence of the entropy production as a constitutive function is shown to produce a wider set of physically admissible models. Furthermore the constitutive property of the entropy production results in an additional, essential term in the evolution equation of rate-type materials, as is the case for Duhem-like hysteretic models. This feature of thermodynamically consistent hysteretic materials is exemplified for elastic–plastic materials. The representation formula is shown to allow more general non-local properties while the constitutive entropy production proves essential for the modeling of hysteresis.
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CiteScore
2.10
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