The RAGE radiation-hydrodynamic code

M. Gittings, R. Weaver, M. Clover, T. Betlach, N. Byrne, R. Coker, E. Dendy, R. Hueckstaedt, K. New, Rob Oakes, D. Ranta, Ryan Stefan
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引用次数: 331

Abstract

We describe RAGE, the 'radiation adaptive grid Eulerian' radiation-hydrodynamics code, including its data structures, its parallelization strategy and performance, its hydrodynamic algorithm(s), its (gray) radiation diffusion algorithm, and some of the considerable amount of verification and validation efforts. The hydrodynamics is a basic Godunov solver, to which we have made significant improvements to increase the advection algorithm's robustness and to converge stiffnesses in the equation of state. Similarly, the radiation transport is a basic gray diffusion, but our treatment of the radiation?material coupling, wherein we converge nonlinearities in a novel manner to allow larger timesteps and more robust behavior, can be applied to any multi-group transport algorithm.
RAGE辐射流体力学代码
我们描述了RAGE,“辐射自适应网格欧拉”辐射流体动力学代码,包括它的数据结构,它的并行化策略和性能,它的流体动力学算法,它的(灰色)辐射扩散算法,以及一些相当数量的验证和验证工作。流体力学是一个基本的Godunov解算器,我们对其进行了重大改进,增加了平流算法的鲁棒性,并收敛了状态方程中的刚度。同样,辐射输运是一种基本的灰色扩散,但是我们对辐射的处理呢?材料耦合,其中我们以一种新颖的方式收敛非线性,以允许更大的时间步长和更稳健的行为,可以应用于任何多组传输算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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