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Parallel three-dimensional DSMC method using mesh refinement and variable time-step scheme

机译:网格细化和可变时步法的并行三维DSMC方法

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Application of variable time-step and unstructured adaptive mesh refinement in parallel three-dimensional Direct Simulation Monte Carlo (DSMC) method is presented. A variable time-step method using the particle fluxes conservation (mass, momentum and energy) across the cell interface is implemented to reduce the number of simulated particles and the number of iterations of transient period towards steady state, without sacrificing the solution accuracy. In addition, a three-dimensional h-refined unstructured adaptive mesh with simple but effective mesh-quality control, obtained from a preliminary parallel DSMC simulation, is used to increase the accuracy of the DSMC solution. Completed code is then applied to compute several external and internal flows, and compared with previous results wherever available. (C) 2004 Elsevier B.V. All rights reserved.
机译:提出了可变时步和非结构化自适应网格细化在并行三维直接模拟蒙特卡罗方法中的应用。实现了使用跨单元界面的粒子通量守恒(质量,动量和能量)的可变时步方法,以减少模拟粒子的数量和向稳态过渡的瞬态周期的迭代次数,而不会牺牲求解精度。此外,从初步的并行DSMC仿真获得的具有简单但有效的网格质量控制的3维h精修非结构化自适应网格可用于提高DSMC解决方案的准确性。然后将完整的代码应用于计算多个外部和内部流,并与以前的结果(如有)进行比较。 (C)2004 Elsevier B.V.保留所有权利。

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