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On the inadmissibility of non-evolutionary shocks

机译:论非进化冲击的不可接受性

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In recent years, numerical solutions of the equations of compressible magnetohydrodynamic (MHD) flows have been found to contain intermediate shocks for certain kinds of problems. Since these results would seem to be in conflict with the classical theory of MHD shocks, they have stimulated attempts to reexamine various aspects of this theory, in particular the role of dissipation. In this paper, we study the general relationship between the evolutionary conditions for discontinuous solutions of the dissipation-free system and the existence and uniqueness of steady dissipative shock structures for systems of quasilinear conservation laws with a concave entropy function. Our results confirm the classical theory. We also show that the appearance of intermediate shocks in numerical simulations can be understood in terms of the properties of the equations of planar MHD, for which some of these shocks turn out to be evolutionary. Finally, we discuss ways in which numerical schemes can be modified in order to avoid the appearance of intermediate shocks in simulations with such symmetry.
机译:近年来,已发现可压缩磁流体动力学(MHD)流动方程的数值解包含某些问题的中间冲击。由于这些结果似乎与MHD冲击的经典理论相抵触,因此它们促使人们重新审视该理论的各个方面,尤其是耗散的作用。在本文中,我们研究了具有耗散熵的拟线性守恒律系统的无耗散系统的不连续解的演化条件与稳态耗散激波结构的存在与唯一性之间的一般关系。我们的结果证实了经典理论。我们还表明,可以根据平面MHD方程的特性来理解数值模拟中的中间冲击的出现,对于这些冲击,其中一些冲击被证明是进化的。最后,我们讨论了可以修改数值方案的方法,以避免在具有这种对称性的模拟中出现中间冲击。

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