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Application of adaptively refined unstructured grids in DSMC to shock wave simulations

机译:适用于DSMC在DSMC到冲击波模拟中的应用

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An efficient, new DSMC framework based on AMR/octree unstructured grids is demonstrated for the modeling of near-continuum, strong shocks in hypersonic flows. The code is able to capture the different length scales in such flows through the use of a linearized representation of the unstructured grid using Morton-Z space filling curve for efficient access of collision cells. Strategies were developed to achieve a strong scaling of nearly ideal speed up to 4096 processors and 87% efficiency (weak scaling) for 8192 processors for a strong shock created by flow over a hemisphere. To achieve these very good scalings, algorithms were developed to weight the computational work of a processor by the use of profiled run time data, create maps to optimize processor point-to-point communications, and efficiently generate new DSMC particles every time step. Rigorous thermal non-equilibrium required for modeling high Mach number shocks was achieved through the accurate modeling of collision temperatures on a sampling grid designed to be compatible with the above approaches. The simulation of a nitrogen flow over a double wedge configuration for near-continuum conditions revealed complex hypersonic SWBLIs as well as three-dimensional gas-surface kinetic effects such as velocity and temperature slip. The simulations showed that three-dimensional effects are important in predicting the size of the separation bubble, which in turn, influences gas-surface measurements such as pressure and heat flux. Published by Elsevier Ltd.
机译:基于AMR / Octree非结构化网格的高效,新的DSMC框架是为了近连续的建模,过度的流量强烈冲击。代码能够通过使用使用Morton-Z空间填充曲线的非结构化网格的线性化表示来捕获这种流的不同长度尺度,以便于碰撞单元的有效访问。开发了策略,以实现高达4096个处理器的近似理想速度的强大缩放,8192个处理器的效率(弱缩放),用于通过半球流动创建的强烈冲击。为了实现这些非常好的缩放,开发了算法以通过使用分析的运行时间数据来重量处理器的计算工作,创建地图以优化处理器点对点通信,并每次步骤有效地生成新的DSMC粒子。通过精确的碰撞温度建模,旨在与上述方法兼容的采样网格的精确建模,实现了高马赫数冲击所需的严格热非平衡。在近连续局部条件下对双楔形构型进行氮流的模拟显示了复杂的超声波SWBLIS,以及三维气体表面动力学效应,例如速度和温度滑移。模拟表明,在预测分离气泡的尺寸时,三维效果是重要的,这又影响了诸如压力和热通量的气体表面测量。 elsevier有限公司出版

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