Shock–Discharge Interaction Model Extended into the Third Dimension

Plasma Pub Date : 2024-05-11 DOI:10.3390/plasma7020020
Anna Markhotok
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引用次数: 0

Abstract

This work is an addition to the previously developed two-dimensional model of the shock–plasma interaction, extending it into the third dimension. The model can trace the evolution of the state of the hypersonic flow and the shock front refracted at a thermal discontinuity. The advantages of using the spherical coordinate system for this type of problem include increased transparency in interpreting the solution and a shortened calculation procedure, because all the changes to the front are reduced to one distortion component. Although the vorticity generation triggered at the interface is a consequence of the refraction and tied to the steep changes in the front, it is shown here that this is not because of an instant parameter jump at the interface due to refraction itself.
扩展到三维空间的冲击-放电相互作用模型
这项工作是对之前开发的冲击-等离子体相互作用二维模型的补充,将其扩展到了三维空间。该模型可以追踪高超音速流状态的演变以及在热不连续处折射的冲击前沿。使用球面坐标系来处理这类问题的优点包括提高了解释解法的透明度和缩短了计算程序,因为前沿的所有变化都被简化为一个扭曲分量。虽然在界面处引发的涡度产生是折射的结果,并与锋面的急剧变化有关,但本文显示,这并不是因为折射本身在界面处造成的瞬间参数跃迁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.30
自引率
0.00%
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0
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