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首页> 外文期刊>The Astrophysical Journal. Supplement Series >SIMULATING MAGNETOHYDRODYNAMICAL FLOW WITH CONSTRAINED TRANSPORT AND ADAPTIVE MESH REFINEMENT: ALGORITHMS AND TESTS OF THE AstroBEAR CODE
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SIMULATING MAGNETOHYDRODYNAMICAL FLOW WITH CONSTRAINED TRANSPORT AND ADAPTIVE MESH REFINEMENT: ALGORITHMS AND TESTS OF THE AstroBEAR CODE

机译:用约束运输和自适应网状细化模拟磁流体动力流:Astrobear规则的算法和测试

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摘要

A description is given of the algorithms implemented in the AstroBEAR adaptive mesh-refinement code for ideal magnetohydrodynamics. The code provides several high-resolution shock-capturing schemes which are constructed to maintain conserved quantities of the flow in a finite-volume sense. Divergence-free magnetic field topologies are maintained to machine precision by collating the components of the magnetic field on a cell-interface staggered grid and utilizing the constrained transport approach for integrating the induction equations. The maintenance of magnetic field topologies on adaptive grids is achieved using prolongation and restriction operators which preserve the divergence and curl of the magnetic field across collocated grids of different resolutions. The robustness and correctness of the code is demonstrated by comparing the numerical solution of various tests with analytical solutions or previously published numerical solutions obtained by other codes.
机译:给出了在AstroBEAR自适应网格细化代码中实现的理想磁流体动力学算法的描述。该代码提供了几种高分辨率的震动捕获方案,这些方案旨在在有限的体积上保持流量的守恒量。通过在单元界面交错网格上整理磁场分量并利用约束输运方法来积分归纳方程,可以保持无散度的磁场拓扑以提高机器精度。使用延长和限制算符可以保持自适应网格上的磁场拓扑,延长算子和限制算子可以在不同分辨率的并置网格上保留磁场的发散和卷曲。通过将各种测试的数值解与解析解或其他代码获得的先前发布的数值解进行比较,证明了该编码的鲁棒性和正确性。

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