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Shock Reflection-Diffraction, von Neumann's Conjectures, and Nonlinear Equations of Mixed Type

机译:震动反射 - 衍射,冯·新南的猜测和混合类型的非线性方程

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Shock waves are fundamental in nature. One of the most fundamental problems in fluid mechanics is shock reflection-diffraction by wedges. The complexity of reflection-diffraction configurations was first reported by Ernst Mach in 1878. The problems remained dormant until the 1940s when John von Neumann, as well as other mathematical/experimental scientists, began extensive research into all aspects of shock reflection-diffraction phenomena. In this paper we start with shock reflection-diffraction phenomena and historic perspectives, their fundamental scientific issues and theoretical roles in the mathematical theory of hyperbolic systems of conservation laws. Then we present how the global shock reflection-diffraction problem can be formulated as a boundary value problem in an unbounded domain for nonlinear conservation laws of mixed hyperbolic-elliptic type, and describe the von Neumann conjectures: the sonic conjecture and the detachment conjecture. Finally we discuss some recent developments in solving the von Neumann conjectures and establishing a mathematical theory of shock reflection-diffraction, including the existence, regularity, and stability of global regular configurations of shock reflection-diffraction by wedges.
机译:冲击波根本性质。一个流体力学中最根本的问题是冲击反射衍射的楔子。反射衍射配置的复杂性首先是由马赫在1878年报告的问题一直处于沉寂状态,直到20世纪40年代,当约翰·冯·诺依曼,以及其他数学/实验的科学家,开始了广泛的研究的冲击反射,衍射现象的各个方面。在本文中,我们开始震惊反射衍射现象和历史的角度来看,他们的基本科学问题和守恒定律双曲线系统的数学理论的理论作用。然后,我们目前的全球冲击反射衍射问题,如何可以配制成混合双曲椭圆型的非线性守恒定律的无界域边界值问题,并介绍了冯·诺依曼猜想:声波猜想和支队猜想。最后,我们讨论了解决冯·诺依曼猜想,建立震反射衍射的数学理论,包括楔形的存在,规律性和冲击反射衍射全球常规配置的稳定性,一些最近的事态发展。

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