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A parallel cell-based DSMC method on unstructured adaptive meshes

机译:非结构化自适应网格上基于单元的并行DSMC方法

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A parallel DSMC method based on a cell-based data structure is developed for the efficient simulation of rarefied gas flows on PC-clusters. Parallel computation is made by decomposing the computational domain into several subdomains. Dynamic load balancing between processors is achieved based on the number of simulation particles and the number of cells allocated in each subdomain. Adjustment of cell size is also made through mesh adaptation for the improvement of solution accuracy and the efficient usage of meshes. Applications were made for a two-dimensional supersonic leading-edge flow, the axi-symmetric Rothe's nozzle, and the open hollow cylinder flare flow for validation. It was found that the present method is an efficient tool for the simulation of rarefied gas flows on PC-based parallel machines.
机译:开发了一种基于单元数据结构的并行DSMC方法,用于高效模拟PC群集上的稀薄气体流。通过将计算域分解为几个子域来进行并行计算。处理器之间的动态负载平衡是根据模拟粒子的数量和每个子域中分配的单元数量实现的。还可以通过网格调整来调整像元大小,以提高求解精度并有效利用网格。应用了二维超音速前沿流,轴对称Rothe喷嘴和开放式空心圆柱扩口流进行验证。发现本方法是用于在基于PC的并行机上模拟稀薄气体流的有效工具。

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