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首页> 外文期刊>Journal of Computational Physics >Parallel Fokker-Planck-DSMC algorithm for rarefied gas flow simulation in complex domains at all Knudsen numbers
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Parallel Fokker-Planck-DSMC algorithm for rarefied gas flow simulation in complex domains at all Knudsen numbers

机译:并行Fokker-Planck-DSMC算法,用于所有Knudsen数字的复杂域中的稀土气体流模拟

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摘要

A major challenge for the conventional Direct Simulation Monte Carlo (DSMC) technique lies in the fact that its computational cost becomes prohibitive in the near continuum regime, where the Knudsen number(Kn)-characterizing the degree of rarefaction-becomes small. In contrast, the Fokker-Planck(FP) based particle Monte Carlo scheme allows for computationally efficient simulations of rarefied gas flows in the low and intermediate Kn regime. The Fokker-Planck collision operator-instead of performing binary collisions employed by the DSMC method-integrates continuous stochastic processes for the phase space evolution in time. This allows for time step and grid cell sizes larger than the respective collisional scales required by DSMC. Dynamically switching between the FP and the DSMC collision operators in each computational cell is the basis of the combined FP-DSMC method, which has been proven successful in simulating flows covering the whole Kn range. Until recently, this algorithm had only been applied to two-dimensional test cases. In this contribution, we present the first general purpose implementation of the combined FP-DSMC method. Utilizing both shared-and distributed-memory parallelization, this implementation provides the capability for simulations involving many particles and complex geometries by exploiting state of the art computer cluster technologies. (C) 2016 Elsevier Inc. All rights reserved.
机译:传统的直接仿真蒙特卡罗(DSMC)技术的主要挑战在于其计算成本在近连续体内变得越来越长,其中Chaudsen号(KN) - 特征稀疏 - 变小。相反,基于FOKKER-PLANCK(FP)的粒子蒙特卡罗方案允许在低和中间KN方案中计算稀土气流的计算上的估计。 Fokker-Planck碰撞运算符 - 而不是执行DSMC方法采用的二进制冲突 - 集成了相位空间演化的连续随机过程。这允许时间步长,并且网格单元尺寸大于DSMC所需的相应驻留尺度。在每个计算单元中的FP和DSMC碰撞运算符之间动态切换是组合FP-DSMC方法的基础,该方法已被证明在模拟覆盖整个kn范围的流动方面。直到最近,该算法仅应用于二维测试用例。在这一贡献中,我们介绍了FP-DSMC方法的第一个通用实现。利用共享和分布式内存并行化,该实现提供了通过利用艺术计算机集群技术的状态来涉及许多粒子和复杂几何模拟的能力。 (c)2016年Elsevier Inc.保留所有权利。

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