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Shock Transition Solutions of Navier-Stokes Equations with Volume Viscosity for Nitrogen and Air

机译:Navier-Stokes方程的冲击过渡解决方案,具有氮气和空气量粘度的粘度

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The internal structure and transition solutions for planar shock waves based on solutions of the Navier-Stokes equations for diatomic and polyatomic gases are examined. The numerical solution of the steady, one-dimensional form of the Navier-Stokes equations describing compressible flows with full viscous and thermal heat conduction effects, including volume viscosity, are considered. The governing ordinary differential equations (ODEs) are solved to obtain the variation of temperature, pressure, density, flow velocity and entropy in both the physical and state planes, through shock waves of varying strength.
机译:研究了基于硅藻和多原子气体的Navier-Stokes方程的溶液的平面冲击波的内部结构和过渡解决方案。考虑了描述具有全粘性和热导热效应的可压缩流的Navier-Stokes方程的稳定,一维形式的数值解。解决了控制常规方程(ODES),以通过变化强度的冲击波获得物理和状态平面中的温度,压力,密度,流速和熵的变化。

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