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首页> 外文期刊>Revista mexicana de fisica >Exact solution of the 1D riemann problem in Newtonian and relativistic hydrodynamics
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Exact solution of the 1D riemann problem in Newtonian and relativistic hydrodynamics

机译:牛顿一维里曼问题的精确解与相对论流体力学

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Some of the most interesting scenarios that can be studied in astrophysics, contain fluids and plasma moving under the influence of strong gravitational fields. To study these problems it is required to implement numerical algorithms robust enough to deal with the equations describing such scenarios, which usually involve hydrodynamical shocks. It is traditional that the first problem a student willing to develop research in this area is to numerically solve the one dimensional Riemann problem, both Newtonian and relativistic. Even a more basic requirement is the construction of the exact solution to this problem in order to verify that the numerical implementations are correct. We describe in this paper the construction of the exact solution and a detailed procedure of its implementation.
机译:可以在天体物理学中研究的一些最有趣的场景,包含在强引力场影响下的流体和等离子体运动。为了研究这些问题,需要实施足够鲁棒的数值算法来处理描述此类情况的方程,这些情况通常涉及流体动力冲击。传统上,学生愿意在该领域进行研究的第一个问题是用数值方法解决牛顿和相对论的一维黎曼问题。甚至更基本的要求是构造此问题的精确解决方案,以验证数字实现的正确性。我们在本文中描述了确切解决方案的构造及其实现的详细过程。

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