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Free boundary problems in shock reflection/diffraction and related transonic flow problems

机译:冲击反射/衍射中的自由边界问题以及相关的跨音速流动问题

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摘要

Shock waves are steep wavefronts that are fundamental in nature, especially in high-speed fluid flows. When a shock hits an obstacle, or a flying body meets a shock, shock reflection/diffraction phenomena occur. In this paper, we show how several long-standing shock reflection/diffraction problems can be formulated as free boundary problems, discuss some recent progress in developing mathematical ideas, approaches and techniques for solving these problems, and present some further open problems in this direction. In particular, these shock problems include von Neumann's problem for shock reflection–diffraction by two-dimensional wedges with concave corner, Lighthill's problem for shock diffraction by two-dimensional wedges with convex corner, and Prandtl-Meyer's problem for supersonic flow impinging onto solid wedges, which are also fundamental in the mathematical theory of multidimensional conservation laws.
机译:冲击波是自然界中最基本的陡峭波前,尤其是在高速流体流动中。当冲击击中障碍物或飞行物体遇到冲击时,会发生冲击反射/衍射现象。在本文中,我们展示了如何将几个长期存在的冲击反射/衍射问题表达为自由边界问题,讨论了开发解决这些问题的数学思想,方法和技术方面的一些最新进展,并在此方向上提出了一些进一步的开放性问题。 。特别是,这些冲击问题包括冯·诺伊曼(von Neumann)的冲击反射问题-带有凹角的二维楔形物的衍射,莱特希尔(Lighthill)的带有凸角的二维楔形物的冲击衍射问题,以及超音速流撞击实心楔形的Prandtl-Meyer问题。 ,这也是多维守恒律数学理论的基础。

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