首页> 外文期刊>The Astrophysical Journal. Supplement Series >WENO-WOMBAT: Scalable Fifth-order Constrained-transport Magnetohydrodynamics for Astrophysical Applications
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WENO-WOMBAT: Scalable Fifth-order Constrained-transport Magnetohydrodynamics for Astrophysical Applications

机译:Weno-Wombat:用于天体物理应用的可扩展五阶约束传输磁力学动力学

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摘要

Owing to increases in computing power, high-order Eulerian schemes will likely become instrumental in simulations of turbulence and magnetic field amplification in astrophysical fluids in the next years. We present the implementation of a fifth-order weighted essentially non-oscillatory scheme for constrained-transport magnetohydrodynamics in the code WOMBAT. We establish the correctness of our implementation with extensive number tests. We find that the fifth-order scheme performs as accurately as a common second-order scheme at half the resolution. We argue that for a given solution quality, the new scheme is more computationally efficient than lower order schemes in three dimensions. We also establish the performance characteristics of the solver in the WOMBAT framework. Our implementation fully vectorizes using flattened arrays in thread-local memory. It performs at about 0.6 million zones per second per node on Intel Broadwell. We present scaling tests of the code on up to 98,000 cores on the Cray XC40 machine "Hazel Hen," with a sustained performance of about 5% of peak at scale.
机译:由于计算能力的增加,高阶欧拉方案可能会在下几年模拟天体物理液中的湍流和磁场放大模拟。我们介绍了第五阶加权基本上非振荡方案的代码袋熊中的约束传输磁力学动力学。我们以广泛的数量测试建立了我们实现的正确性。我们发现第五阶方案尽可能准确地执行分辨率的常见二阶计划。我们认为,对于给定的解决方案质量,新方案比三维的较低订单方案更具计算效率。我们还建立了袋熊框架中求解器的性能特征。我们的实现完全在线程内存中使用扁平阵列进行了完全的矢量化。它在英特尔Broadwell上每节点每秒每秒每秒0.6万区。我们在CRAY XC40机器“Hazel Hen”上的最多98,000个核心的代码进行了扩展测试,持续性能为尺度约5%的峰值。

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