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NUMERICAL STUDY OF CONDENSATION OF A POLYATOMIC VAPOR BY A SHOCK WAVE BASED ON THE KINETIC THEORY OF GASES

机译:基于气体动力学理论的冲击波通过冲击波凝结多原子蒸汽的数值研究

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A semi-infinite expanse of a polyatomic vapor bounded by its condensed phase is considered. The condensed phase is a thin liquid film on a solid wall of finite thickness. An incident shock wave is reflected at the liquid film, and thereby the pressure behind the reflected shock exceeds the saturated pressure. Then, the vapor begins to condense onto the surface of the liquid film. We present the results of numerical study of the behavior of vapor and the growth rate of liquid film based on the kinetic theory, the Gaussian-BGK model of the Boltzmann equation with a kinetic boundary condition of a mixed type including the condensation coefficient. It is shown that both the behavior of vapor and the growth rate of liquid film are considerably affected by values of the condensation coefficient. The numerical results are also compared with those by a previous theory.
机译:考虑由其冷凝相的多态蒸气的半无限扩展。冷凝相是在有限厚度的实心壁上的薄液膜。入射冲击波在液体膜上反射,从而反射冲击后面的压力超过饱和压力。然后,蒸汽开始凝结到液体膜的表面上。我们提出了基于动力学理论的基于动力学理论的蒸气行为的数值研究结果,具有包括冷凝系数的混合类型的动力学边界条件的高斯-BGK模型。结果表明,蒸汽的行为和液体膜的生长速率都受到冷凝系数的值的显着影响。数值结果也与先前理论的比较。

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