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首页> 外文期刊>Advances in space research >Self-similar flow behind a spherical shock wave in a non-ideal dusty gas under a gravitational field: Isothermal flow
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Self-similar flow behind a spherical shock wave in a non-ideal dusty gas under a gravitational field: Isothermal flow

机译:重力场下非理想粉尘气体中球形激波后面的自相似流:等温流

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摘要

Similarity solutions are obtained for one-dimensional unsteady isothermal flow of a dusty gas behind a spherical shock wave with time dependent energy input. The dusty gas is assumed to be a mixture of non-ideal (or perfect) gas and small solid particles, in which solid particles are continuously distributed. It is assumed that the equilibrium flow-conditions are maintained, and the viscous stress and heat conduction of the mixture are negligible. The medium is taken to be under the influence of the gravitational field due to a heavy nucleus at the origin (Roche model). The total energy of the flow-field behind the shock is increasing. The effects of an increase in the mass concentration of solid particles, the ratio of the density of the solid particles to the initial density of the gas, the gravitational parameter (or shock Mach number), and the parameter of non-idealness of the gas in the mixture, are investigated. It is shown that due to presence of gravitational field the isothermal compressibility of the medium and the flow-variables increases and the shock strength decreases. A comparison has also been made between the medium with and without gravitational field. The shock waves in dusty medium can be important for description of star formation, shocks in supernova explosions, etc.
机译:对于具有随时间变化的能量输入的球形冲击波后的含尘气体的一维非稳态等温流动,获得了相似的解。含尘气体被认为是非理想气体(或理想气体)和固体小颗粒的混合物,其中固体颗粒连续分布。假定保持平衡流动条件,并且混合物的粘性应力和热传导可忽略不计。由于原点的重核(Roche模型),介质被认为处于重力场的影响下。冲击后流场的总能量正在增加。固体颗粒质量浓度,固体颗粒密度与气体初始密度之比,重力参数(或冲击马赫数)和气体非理想参数增加的影响在混合物中,进行了调查。结果表明,由于重力场的存在,介质和流动变量的等温压缩性增加,冲击强度降低。在有和没有重力场的介质之间也进行了比较。尘埃介质中的冲击波对于描述恒星形成,超新星爆炸的冲击等非常重要。

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