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首页> 外文期刊>Journal of Differential Equations >Well-posedness for two-dimensional steady supersonic Euler flows past a Lipschitz wedge
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Well-posedness for two-dimensional steady supersonic Euler flows past a Lipschitz wedge

机译:二维稳态超音速欧拉的适定性流过Lipschitz楔形

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For a supersonic Euler flow past a straight-sided wedge whose vertex angle is less than the extreme angle, there exists a shock-front emanating from the wedge vertex, and the shock-front is usually strong especially when the vertex angle of the wedge is large. In this paper, we establish the L-1 well-posedness for two-dimensional steady supersonic Euler flows past a Lipschitz wedge whose boundary slope function has small total variation, when the total variation of the incoming flow is small. In this case, the Lipschitz wedge perturbs the flow, and the waves reflect after interacting with the strong shock-front and the wedge boundary. We first obtain the existence of solutions in BV when the incoming flow has small total variation by the wave front tracking method and then establish the L 1 stability of the solutions with respect to the incoming flows. In particular, we incorporate the nonlinear waves generated from the wedge boundary to develop a Lyapunov functional between two solutions containing strong shock-fronts, which is equivalent to the L-1 norm, and prove that the functional decreases in the flow direction. Then the L-1 stability is established, so is the uniqueness of the solutions by the wave front tracking method. Finally, the uniqueness of solutions in a broader class, the class of viscosity solutions, is also obtained. (c) 2007 Elsevier Inc. All rights reserved.
机译:对于超音速欧拉流经过顶点角小于极角的直边楔形,存在一个从楔形顶点发出的激波前部,并且该激波前部通常很强,特别是当楔形的顶角为大。在本文中,当进入流的总变化较小时,我们建立了经过Lipschitz楔的二维稳态超音速欧拉流的L-1适定性,该Lipschitz楔的边界斜率函数具有较小的总变化。在这种情况下,Lipschitz楔形扰动了流动,并且波在与强烈的激波前缘和楔形边界相互作用之后反射。我们首先通过波前跟踪方法获得了当输入流的总变化较小时BV中解的存在性,然后建立了关于输入流的解的L 1稳定性。特别是,我们结合了由楔形边界产生的非线性波,以在两个包含强冲击前部的解决方案之间发展出Lyapunov泛函,这等效于L-1范数,并证明了泛函在流动方向上减小。然后建立了L-1稳定性,因此波前跟踪方法的解的唯一性也得以建立。最后,还获得了更广泛类别的溶液(粘度溶液类别)的唯一性。 (c)2007 Elsevier Inc.保留所有权利。

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