Flow behind the magnetogasdynamical cylindrical shock wave in rotating non-ideal dusty gas with monochromatic radiation

IF 1.3 Q3 ORTHOPEDICS
P. Sahu
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引用次数: 3

Abstract

The proliferation of the cylindrical shock in non-ideal rotating gases accompanying the mixture of crystalline solids with monochromatic radiation as well as magnetic (azimuthal/axial) field is examined. The fluid velocity of ambient media is considered to contain radial, axial, and azimuthal heads. Similarity solutions are achieved. The distribution of flow variables in the medium just behind the shock for the cases of power-law shock paths are analyzed. This is worthy to note, the pressure and density at piston disintegrate in occupancy of an azimuthal magnetic field, therefore suction structures at the axis of symmetry, which is identically in accord with controlled circumstances for trying to produce shock waves.
单色辐射下旋转非理想含尘气体中磁气体动力学圆柱激波后的流动
研究了伴随结晶固体与单色辐射以及磁场(方位角/轴向)的混合物的非理想旋转气体中圆柱形冲击的扩散。环境介质的流体速度被认为包含径向、轴向和方位角头。实现了相似的解决方案。分析了幂律激波路径下激波后介质中流动变量的分布。值得注意的是,活塞处的压力和密度在方位角磁场的作用下分解,因此对称轴处的吸力结构与试图产生冲击波的受控环境完全一致。
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来源期刊
Plasma Research Express
Plasma Research Express Energy-Nuclear Energy and Engineering
CiteScore
2.60
自引率
0.00%
发文量
15
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