INTERACTION OF A SINGULAR SURFACE WITH A STRONG SHOCK IN THE INTERSTELLAR GAS CLOUDS

IF 0.9
J. Jena, S. Mittal
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Abstract

Abstract We investigate the interaction between a singular surface and a strong shock in the self-gravitating interstellar gas clouds with the assumption of spherical symmetry. Using the method of the Lie group of transformations, a particular solution of the flow variables and the cooling–heating function for an infinitely strong shock is obtained. This paper explores an application of the singular surface theory in the evolution of an acceleration wave front propagating through an unperturbed medium. We discuss the formation of an acceleration, considering the cases of compression and expansion waves. The influence of the cooling–heating function on a shock formation is explained. The results of a collision between a strong shock and an acceleration wave are discussed using the Lax evolutionary conditions.
星际气体云中单一表面与强烈激波的相互作用
摘要本文研究了自引力星际气体云中奇异表面与强激波的相互作用。利用李群变换的方法,得到了无限强激波的流动变量和冷热函数的特解。本文探讨了奇异面理论在无扰动介质中传播的加速度波前演化中的应用。考虑到压缩波和膨胀波的情况,我们讨论了加速度的形成。说明了冷热作用对激波形成的影响。用Lax演化条件讨论了强激波与加速度波碰撞的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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