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首页> 外文期刊>Инженерно-физический журнал >EXACT SOLUTION FOR AN UNSTEADY ISOTHERMAL FLOW BEHIND A CYLINDRICAL SHOCK WAVE IN A ROTATING PERFECT GAS WITH AN AXIAL MAGNETIC FIELD AND VARIABLE DENSITY
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EXACT SOLUTION FOR AN UNSTEADY ISOTHERMAL FLOW BEHIND A CYLINDRICAL SHOCK WAVE IN A ROTATING PERFECT GAS WITH AN AXIAL MAGNETIC FIELD AND VARIABLE DENSITY

机译:在具有轴向磁场和可变密度的旋转完美气体中的圆柱冲击波后面的不稳定等温流的精确解决方案

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摘要

An exact solution of the problem on the propagation of a cylindrical shock wave in a rotating perfect gas with an axial magnetic field in the case of an isothermal flow is obtained. The initial density, magnetic field strength, and the initial angular velocity in the ambient medium are assumed to vary according to the power law. An exact similarity solution obtained by the McVittie method for an isothermal flow in a rotating gas is first reported. Similarity transformations are used to transform a system of partial differential equations into a system of ordinary differential equations, and then the product solution of McVittie is used to obtain the exact solution. The effects of the values of the gas specific heat ratio, rotational parameter, and of the strength of the initial magnetic field are discussed. It is shown that the shock velocity increases and the shock strength decreases with increase in the values of these parameters. The effect of variation in the value of the initial density index is also studied. The obtained solutions show that the radial fluid velocity, density, pressure, and the magnetic field strength tend to zero as the axis of symmetry is approached.
机译:获得了在旋转完美气体中的圆柱冲击波在具有轴向磁场的情况下的圆柱冲击波的传播的精确解决方案。假设环境介质中的初始密度,磁场强度和初始角速度根据电力法而变化。首先报道了通过McVitte方法获得的旋转气体中的等温流量获得的精确相似溶液。相似性转换用于将部分微分方程的系统转换为常微分方程的系统,然后使用MCVittie的产品解决方案来获得精确的解决方案。讨论了气体比热比,旋转参数和初始磁场强度的影响。结果表明,冲击速度增加,并且减少冲击强度随着这些参数的值的增加而降低。还研究了初始密度指数值的变化的影响。当接近对称轴时,所获得的解决方案表明,随着对称轴线,径向流体速度,密度,压力和磁场强度趋于为零。

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