Correct definition of internal energy at the phenomenological construction of model of multicomponent continuous medium by methods of nonequilibrium thermodynamics

A. Kolesnichenko
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Abstract

Taking into account the methods of thermodynamics of irreversible processes using the Onsager principle, a model of a multicomponent continuous medium is constructed, the internal energy of which is "free" of the kinetic energy of diffusion. The model is designed for an imperfect continuous medium with chemical reactions in the field of conservative external forces. Generalized StefanMaxwell relations are obtained, which represent a system of hydrodynamic equations of motion of a mixture with true inertial forces. The proposed thermodynamic technique made it possible to obtain a number of algebraic relations known from the kinetic theory of gases for the transfer coefficients, relating, in particular, the coefficients of multicomponent diffusion with binary diffusivitys, thermal diffusion ratios with thermal diffusion coefficients and multicomponent diffusion coefficients, true (molecular) thermal conductivity coefficient for multicomponent mixture with partial thermal conductivity coefficient, which indicates their versatility. The results obtained are intended for modeling not only liquid imperfect solutions, but also gas-dust mixtures with a finely dispersed dust component.
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用非平衡热力学方法在多组分连续介质模型的现象学构造中正确定义内能
利用Onsager原理,考虑不可逆过程的热力学方法,建立了一个内能不受扩散动能影响的多组分连续介质模型。该模型是针对不完全连续介质在保守外力场下的化学反应而设计的。得到了具有真惯性力的混合流体动力学方程组的广义stefanmaxwell关系。所提出的热力学技术使得从气体动力学理论中获得一些已知的传递系数的代数关系成为可能,特别是将多组分扩散系数与二元扩散系数,热扩散比与热扩散系数和多组分扩散系数,多组分混合物的真(分子)导热系数与部分导热系数,这表明了它们的多功能性。所得结果不仅适用于模拟液体不完美溶液,也适用于模拟具有精细分散粉尘成分的气体-粉尘混合物。
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