首页> 外文会议>The 2001 ASME International Mechanical Engineering Congress and Exposition, 2001, Nov 11-16, 2001, New York, New York >A PARALLEL HOFD SCHEME FOR DIRECT NUMERICAL SIMULATION OF TURBULENT MAGNETICALLY DRIVEN FLOWS
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A PARALLEL HOFD SCHEME FOR DIRECT NUMERICAL SIMULATION OF TURBULENT MAGNETICALLY DRIVEN FLOWS

机译:湍流磁驱动流直接数值模拟的并行HOFD方案

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摘要

Turbulent magnetically flows occur in a wide range of material processing systems involving electrically conducting melts. This paper presents a parallel higher order scheme for the direct numerical simulation of turbulent magnetically driven flows in induction channels. The numerical method is based on the higher order finite difference algorithm, which enjoys the spectral accuracy while minimizing the computational intensity. This, coupled with the parallel computing strategy, provides a very useful means to simulate turbulent flows. The higher order finite difference formulation of magnetically driven flow problems is described in this paper. The details of the parallel algorithm and its implementation for the simulations on parallel machines are discussed. The accuracy and numerical performance of the higher order finite difference scheme are assessed in comparison with the spectral method. The examples of turbulent magnetically driven flows in induction channels and pressure gradient driven flows in regular channels are given, and the computed results are compared with experimental measurements wherever possible.
机译:湍流在许多涉及导电熔体的材料处理系统中发生。本文提出了一种并行的高阶方案,用于对感应通道中的湍流磁驱动流进行直接数值模拟。数值方法基于高阶有限差分算法,该算法在降低计算强度的同时享有光谱精度。这加上并行计算策略,为模拟湍流提供了非常有用的方法。本文描述了磁驱动流动问题的高阶有限差分公式。讨论了并行算法的细节及其在并行机上进行仿真的实现。与光谱方法相比,评估了高阶有限差分方案的准确性和数值性能。给出了感应通道中的湍流磁力驱动流和常规通道中的压力梯度驱动流的示例,并在可能的情况下将计算结果与实验测量结果进行了比较。

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