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Application of the thermodynamic extremal principle to modeling of thermodynamic processes in material sciences

机译:热力学极值原理在材料科学热力学过程建模中的应用

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摘要

An extremal principle is formulated for thermodynamic systems near equilibrium subjected to various external conditions. It is shown that the principle describes unambiguously the kinetics of the thermodynamic system and replaces classical phenomenological equations. The global formulation of the principle makes it possible i) to introduce discrete characteristic parameters for the proper description of the state and evolution of the system, ii) to take into account constraints amongst the characteristic parameters of the local or global character and iii) to derive the evolution equations for the characteristic parameters. These facts turn the principle into an effective tool for the treatment of non-equilibrium thermodynamic systems.
机译:为热力学系统在接近各种外部条件下接近平衡制定了极值原理。结果表明,该原理清楚地描述了热力学系统的动力学,并取代了经典的现象学方程。原则的整体表述使i)可以引入离散的特征参数来正确描述系统的状态和演化,ii)考虑到局部或全局特征的特征参数之间的约束,并且iii)推导特征参数的演化方程。这些事实使该原理成为处理非平衡热力学系统的有效工具。

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