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首页> 外文期刊>Journal of Computational Physics >A NEW EFFICIENT ALGORITHM FOR COMPUTATIONAL AEROACOUSTICS ON PARALLEL PROCESSORS
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A NEW EFFICIENT ALGORITHM FOR COMPUTATIONAL AEROACOUSTICS ON PARALLEL PROCESSORS

机译:一种新的并行处理器上计算航空声波的有效算法

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One of the great challenges in computational physics is the prediction of flow associated noise, where the quantities of interest, namely the sound waves can be at high frequencies and are usually orders of magnitude smaller in magnitude than the mean quantities. In order to numerically resolve such small scales governed by the fluid dynamics equations, high resolution schemes are required. Thus solutions of flow noise problems are computationally intensive, An efficient, hybrid, data parallel computational aeroacoustics algorithm has been developed for the prediction of noise radiation and scattering from three-dimensional geometries. The algorithm solves the Euler/Navier-Stokes equations in the interior and nonreflecting boundary conditions on the outer boundaries. A moving surface Kirchhoff method is coupled to the flow solver for far-field predictions. The algorithm uses standard time and spatial discretization techniques but utilizes several new optimization strategies that are high ly suitable for single zone solutions on data parallel processors. One strategy, for example, enables simultaneous residual evaluations of the interior and far-field nonreflecting boundary conditions equations, reducing the computational effort spent on them by approximately 60% CPU time savings. The algorithms for the flow solver and the Kirchhoff method and their coupling are described in this paper, and results for some example radiation and scattering problems are presented. (C) 1996 Academic Press, Inc. [References: 29]
机译:计算物理学中的一大挑战是与流相关的噪声的预测,其中感兴趣的量(即声波)可以处于高频,并且其量级通常比平均量小几个数量级。为了从数值上解析由流体动力学方程控制的小比例尺,需要高分辨率方案。因此,流动噪声问题的解决方案需要大量的计算。已经开发了一种有效的,混合的,数据并行计算的航空声学算法,用于预测三维几何形状中的噪声辐射和散射。该算法在内部边界条件和外部边界的非反射边界条件下求解Euler / Navier-Stokes方程。移动表面Kirchhoff方法耦合到流动求解器以进行远场预测。该算法使用标准的时间和空间离散技术,但使用了几种非常适合数据并行处理器上单区域解决方案的新优化策略。例如,一种策略可以同时对内部和远场非反射边界条件方程进行残差评估,从而将花费在计算上的计算量减少了大约60%的CPU时间。本文介绍了流动求解器和Kirchhoff方法的算法及其耦合,并给出了一些示例辐射和散射问题的结果。 (C)1996 Academic Press,Inc. [参考:29]

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