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RELATIVISTIC HYDRODYNAMICS AND ESSENTIALLY NON-OSCILLATORY SHOCK CAPTURING SCHEMES

机译:相对论水动力学和本质上非振荡的震荡捕获方案

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Numerical solutions of relativistic hydrodynamic equations are obtained with essentially non-oscillatory (ENO) finite differencing schemes. The method is explicit, conservative, consistent with the entropy condition, and high-order accurate in space and time. The present implementation is applicable to the most general, three-dimensional problems with an arbitrary equation of state. Numerical experiments, including computations of multi-dimensional flows, demonstrate that the method delivers sharp, non-oscillatory shock transitions without sacrificing high resolution of the smooth regions. This extends results already established for the Euler gas dynamics to the relativistic regime, suggesting the usefulness of ENO schemes for modelling relativistic nuclear collisions. (C) 1995 Academic Press, Inc. [References: 27]
机译:相对论流体动力学方程的数值解是通过本质上非振荡的(ENO)有限差分方案获得的。该方法是显式的,保守的,与熵条件一致的,并且在时空上具有高阶精度。本实施方案适用于具有任意状态方程的最一般的三维问题。包括多维流计算在内的数值实验表明,该方法可在不牺牲平滑区域的高分辨率的情况下提供尖锐的,非振荡的冲击跃迁。这将已经为欧拉气体动力学建立的结果扩展到相对论体系,这表明ENO方案对于模拟相对论核碰撞是有用的。 (C)1995 Academic Press,Inc. [参考:27]

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