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首页> 外文期刊>Communications in Theoretical Physics >Self-Similar Solution of Spherical Shock Wave Propagation in a Mixture of a Gas and Small Solid Particles with Increasing Energy under the In uence of Gravitational Field and Monochromatic Radiation
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Self-Similar Solution of Spherical Shock Wave Propagation in a Mixture of a Gas and Small Solid Particles with Increasing Energy under the In uence of Gravitational Field and Monochromatic Radiation

机译:气体和小固体颗粒的混合物中的球形冲击波传播的自我相似溶液,其在重力场和单色辐射的情况下的能量增加

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Similarity solution for a spherical shock wave with or without gravitational field in a dusty gas is studied under the action of monochromatic radiation. It is supposed that dusty gas be a mixture of perfect gas and micro solid particles. Equilibrium flow condition is supposed to be maintained and energy is varying which is continuously supplied by inner expanding surface. It is found that similarity solution exists under the constant initial density. The comparison between the solutions obtained in gravitating and non-gravitating medium is done. It is found that the shock strength increases with an increase in gravitational parameter or ratio of the density of solid particles to the initial density of the gas, whereas an increase in the radiation parameter has decaying effect on the shock waves.
机译:在单色辐射的作用下,研究了具有或不具有粉尘气体中的具有或不具有引力场的球面冲击波的相似解。 假设尘土飞扬的气体是完美气体和微固体颗粒的混合物。 应该维持平衡流动条件,并且能量变化,其由内部扩展表面连续供应。 发现相似性解决方案存在于恒定的初始密度下。 在重力和非重力介质中获得的溶液之间的比较是进行的。 发现冲击强度随着重力参数或固体颗粒密度与气体初始密度的比率而增加,而辐射参数的增加对冲击波具有衰减效应。

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