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Similarity solutions for magnetogasdynamic shock waves in a rotating ideal gas using the Lie group-theoretic method

机译:使用LIE群理论方法旋转理想气体中磁极动态冲击波的相似解

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摘要

The propagation of a cylindrical shock wave under the influence of an azimuthal magnetic field in a rotating medium for adiabatic flow conditions is investigated using the Lie group transformation method. The density, magnetic field, and azimuthal and axial fluid velocities are assumed to vary in the undisturbed medium. The arbitrary constants appearing in the expressions for the infinitesimals of the local Lie group of transformations bring about different cases of solutions, i.e., with a power-law shock path, with an exponential-law shock path, and a particular case of a power-law shock path. Numerical solutions are obtained in the case of a power-law shock path and exponential-law shock path. The distributions of gasdynamical quantities are discussed based on figures. The effects of varying the values of the adiabatic exponent γ, Alfven-Mach number M~(-2)_A, ambient azimuthal fluid velocity variation index λ_1, and ambient density variation index o on the flow variables and shock strength are studied. With an increase in the adiabatic exponent or the strength of the magnetic field, the shock strength decreases. However, an increase in the ambient density variation index or ambient azimuthal fluid velocity variation index results in an increase in the shock strength. The numerical calculations are carried out using Mathematica software.
机译:使用LIE组转换方法研究了用于绝热流动条件的旋转介质中的​​方位磁场的影响下的圆柱冲击波的传播。假设密度,磁场和方位角和轴向流体速度在未受干扰的介质中变化。出现在当地李类转换组无限的表达中的任意常数为不同的解决方案案例,即具有指数律震动路径,以及功率的特定情况法律震动道。在幂律冲击路径和指数律震动路径的情况下获得数值解决方案。基于附图讨论了气体动力学量的分布。改变了绝热指数γ,Alfven-Mach数M〜(-2)_A,环境方位角流体速度变化率λ_1和环境密度变化指数O的效果在流量变量和冲击强度上进行了研究。随着绝热指数的增加或磁场的强度,冲击强度降低。然而,环境密度变化指数或环境方位角流体速度变化指数的增加导致休克强度的增加。使用Mathematica软件进行数值计算。

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