首页> 外文期刊>Brazilian journal of physics >Shock Wave Driven Out by a Piston in a Mixture of a Non-ideal Gas and Small Solid Particles Under the Influence of Azimuthal or Axial Magnetic Field
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Shock Wave Driven Out by a Piston in a Mixture of a Non-ideal Gas and Small Solid Particles Under the Influence of Azimuthal or Axial Magnetic Field

机译:在方位角或轴向磁场的影响下,通过活塞在非理想气体和小固体颗粒的混合物中驱动的冲击波

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摘要

One-dimensional self-similar unsteady flows behind a spherical or cylindrical shock wave driven out by a piston moving with time according to a power law in a dusty gas is investigated. The medium is assumed to be the mixture of small solid particles of micro-size and a non-ideal gas. The solid particles are uniformly distributed in the mixture, and the shock wave is assumed to be driven by the inner surface (piston). It is assumed that the equilibrium flow-conditions are maintained and the moving piston continuously supplies the variable energy input. Similarity solutions exist only when the surrounding medium is of constant density. Solutions are obtained, in both cases, when the flow between the shock and the piston is isothermal or adiabatic. The shock waves in non-ideal dusty gas can be important for the description of shocks in supernova explosions, in the study of a flare produced shock in the solar wind, the central part of starburst galaxies, nuclear explosion, rupture of the pressurized vessel, in the analysis of data from exploding wire experiments, and cylindrically symmetric hypersonic flow problems associated with meteors or re-entry vehicles, etc. The findings of the present work provided a clear picture of whether and how the non-idealness of the gas and the presence of the magnetic field affect the propagation of shock and the flow behind it. It is interesting to note that in the presence of azimuthal magnetic field, the pressure and density vanish at the piston and hence a vacuum is formed at the center of symmetry for both the isothermal and adiabatic flows, which is in excellent agreement with the laboratory condition to produce the shock wave.
机译:研究了通过在尘埃气体中的动力法在尘埃气体中随时间移动的球形或圆柱形冲击波后面的一维自我相似的不稳定流动。假设培养基是小型固体颗粒的微尺寸和非理想气体的混合物。固体颗粒均匀地分布在混合物中,并且假设冲击波由内表面(活塞)驱动。假设保持平衡流动条件并且移动活塞连续地提供可变能量输入。仅当周围介质具有恒定密度时,仅存在相似性解决方案。在两种情况下,当冲击和活塞之间的流动是等温或绝热时,可以获得溶液。非理想尘土飞扬的气体中的冲击波对于超新加达爆炸的震动描述可能是重要的,在耀斑的震动中的研究中,爆炸式星系的中央部分,核爆炸,加压血管破裂的震动,在分析来自爆炸电线实验的数据中,以及与流星或再入车辆相关的圆柱对称过度流量问题等。本工作的发现提供了无论是如何以及如何以及如何对气体的非理想性以及磁场的存在影响冲击和流动后面的流动的传播。值得注意的是,在方位磁场的存在下,在活塞处消失的压力和密度消失,因此在等温和绝热流的对称中心形成真空,这与实验室条件非常一致产生冲击波。

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