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稀薄多原子气体中激波结构的热力学理论:超越贝特-特勒理论

Thermodynamic theory of the shock wave structure in a rarefied polyatomic gas: beyond the Bethe-Teller theory.

作者信息

Taniguchi Shigeru, Arima Takashi, Ruggeri Tommaso, Sugiyama Masaru

机构信息

Graduate School of Engineering, Nagoya Institute of Technology, Nagoya 466-8555, Japan.

Center for Social Contribution and Collaboration, Nagoya Institute of Technology, Nagoya 466-8555, Japan.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2014 Jan;89(1):013025. doi: 10.1103/PhysRevE.89.013025. Epub 2014 Jan 31.

Abstract

The structure of a shock wave in a rarefied polyatomic gas is studied on the basis of the theory of extended thermodynamics. Three types of the shock wave structure observed in experiments, that is, the nearly symmetric shock wave structure (type A, small Mach number), the asymmetric structure (type B, moderate Mach number), and the structure composed of thin and thick layers (type C, large Mach number), are explained by the theory in a unified way. The theoretical prediction of the profile of the mass density agrees well with the experimental data. The well-known Bethe-Teller theory of the shock wave structure in a polyatomic gas is reexamined in the light of the present theory.

摘要

基于扩展热力学理论研究了稀薄多原子气体中激波的结构。实验中观察到的三种激波结构,即近对称激波结构(A型,小马赫数)、非对称结构(B型,中等马赫数)以及由薄层和厚层组成的结构(C型,大马赫数),该理论以统一的方式对其进行了解释。质量密度分布的理论预测与实验数据吻合良好。根据本理论重新审视了著名的多原子气体中激波结构的贝特 - 泰勒理论。

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