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Non-monotonic traveling wave and computational solutions for gas dynamics Euler equations with stiff relaxation source terms

机译:具有刚性松弛源项的气体动力学欧拉方程的非单调行波及计算解

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We study the existence of non-monotone traveling wave solutions and its properties for an isothermal Euler system with relaxation describing the perfect gas flow. In order to confront our results, we first apply a mollification approach as an effective regularization method for solving an ill-posed problem for an associated reduced system for the Euler model under consideration, which in turn is solved by using the method of characteristics. Next, we developed a cheap unsplitting finite volume scheme that reproduces the same traveling wave asymptotic structure as that of the Euler solutions of the continuous system at the discrete level. The method is conservative by construction and relatively easy to understand and implement. Although we do not have a mathematical proof that our designed scheme enjoys the asymptotic preserving and well-balanced properties, we were able to reproduce consistent solutions for the more general Euler equations with gravity and friction recently published in the specialized literature, which in turn are procedures based on a Godunov-type scheme and based on an asymptotic preserving scheme, yielding good verification and performance to our method. (C) 2015 Elsevier Ltd. All rights reserved.
机译:我们研究了具有松弛的等温欧拉系统的非单调行波解的存在及其性质,并描述了理想的气体流动。为了面对我们的结果,我们首先将旋转化方法作为一种有效的正则化方法,用于解决所考虑的Euler模型相关联的归约系统的不适定问题,然后使用特征方法对其进行求解。接下来,我们开发了一种便宜的不分裂有限体积方案,该方案在离散级别上再现了与连续系统的Euler解相同的行波渐近结构。该方法在构造上是保守的,并且相对容易理解和实施。尽管我们没有数学证明我们的设计方案具有渐近保持性和良好平衡性,但我们能够重现最近发表于专业文献中的具有重力和摩擦力的更通用的欧拉方程的一致解,这些反过来又是基于Godunov型方案和渐近保存方案的程序,对我们的方法有很好的验证和性能。 (C)2015 Elsevier Ltd.保留所有权利。

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