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Extended thermodynamics of dense gases in the presence of dynamic pressure

机译:在存在动态压力的情况下浓密气体的扩展热力学

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Extended thermodynamics (ET) developed up to now fails when a gas is very dense and is composed of molecules with small internal degrees of freedom because the condition of convexity (stability) is violated. The aim of this paper is to explore a possible approach to construct an ET theory that is valid for any dense gas with the condition that it reduces to the usual ET theory when a gas is sufficiently rarefied. We restrict our study, for simplicity, within the simplest case in which the dissipation is only due to the dynamic pressure. Therefore the basic system of equations is the simplest variant of the Euler system, that is, the system composed of the equations for the conservation laws and an equation for the dynamic pressure (6-field theory).
机译:当气体非常稠密且由内部自由度较小的分子组成时,由于违反了凸度(稳定性)条件,因此迄今为止开发的扩展热力学(ET)失效。本文的目的是探索一种可行的方法来构建对任何稠密气体都有效的ET理论,条件是当一种气体被充分稀化时,它会减少到通常的ET理论。为简单起见,我们将研究限制在最简单的情况下,即耗散仅是由于动态压力引起的。因此,方程的基本系统是欧拉系统的最简单的变体,即由守恒律方程和动压力方程组成的系统(六场理论)。

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