基于微过程分析的多组分介质传递特性值的确定

IF 0.3 Q4 MECHANICS
Irina V. Anisimova, Victor N. Ignat'ev, Elena Yu. Lapteva
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引用次数: 0

摘要

本文提出了多组分气体混合过程数学建模的两级方法。它涉及基于宏观方程的守恒定律的描述和利用微观过程分析确定相应传递系数的结合。本工作的主要目的是基于内部微过程的分析,开发一种确定多组分介质中输运特性的算法。因此,使用了气体和液体的分子动力学理论,即玻尔兹曼方程的碰撞部分。它考虑了介质中微过程对输运系数值的影响,包含了多个反常积分。当用Chapman-Enskog方法对Boltzmann方程进行积分时,输运系数通过表示分子碰撞积分线性组合的Sonin多项式的积分括号来表示。他们的计算需要使用有效的数学方法,包括并行计算的元素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determination of the values of transfer characteristics in multicomponent media on the basis of micro-process analysis
This paper proposes a two-level approach for mathematical modeling of processes in multicomponent gas mixtures. It involves a combination of the description of conservation laws based on macro-equations and the determination of the corresponding transfer coefficients using the analysis of micro-processes. The main purpose of this work is to develop an algorithm for determining transport characteristics in multicomponent media based on the analysis of inner micro-processes. Hence, the kinetic molecular theory of gases and liquids is used, namely, the collision part of the Boltzmann equation. It includes multiple improper integrals taking into account the effect of micro-processes in the medium on the values of transport coefficients. When integrating the Boltzmann equation by the Chapman-Enskog method, the transport coefficients are expressed through integral brackets of the Sonin polynomials, which represent the linear combinations of molecular collision integrals. Their calculations require the use of efficient mathematically sound ways including the elements of parallel computing.
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CiteScore
0.90
自引率
66.70%
发文量
0
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