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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Generalized hydrodynamic theory of shock waves in rigid diatomic gases - art. no. 046303
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Generalized hydrodynamic theory of shock waves in rigid diatomic gases - art. no. 046303

机译:刚性双原子气体中冲击波的广义流体力学理论-艺术。没有。 046303

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Generalized hydrodynamic theory of shock waves is phenomenologically developed for rigid diatomic molecules. The generalized hydrodynamic equations developed are thermodynamically consistent, obeying the laws of thermodynamics. They reduce to the Navier-Stokes-Fourier theory of the classical hydrodynamics in the limit of low Mach number. The theory is applied to study the one-dimensional shock wave structure of nitrogen gas, which is treated as a rigid molecule. An excellent agreement with experiment is obtained for the inverse shock widths up to Mach number 10 reported in the literature. The theory is applicable to arbitrary dimension. On the basis of direction field singularities. of the velocity and temperature evolution equations of the theory, it is possible to predict that the shock solutions exist for all Mach numbers in the case of one-dimensional shock waves studied. [References: 53]
机译:冲击波的广义流体力学理论是从现象学上发展的,用于刚性双原子分子。遵循热力学定律,开发的广义流体力学方程是热力学一致的。它们在低马赫数的范围内简化为经典流体动力学的Navier-Stokes-Fourier理论。该理论被用于研究被视为刚性分子的氮气的一维冲击波结构。对于文献中报道的高达10马赫数的反激冲击宽度,与实验取得了很好的一致性。该理论适用于任意维度。基于方向场奇点。根据理论的速度和温度演化方程,可以预测在研究一维激波的情况下,所有马赫数都存在激波解。 [参考:53]

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