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Simulations of flow instability in three dimensional deep cavities with multi relaxation time lattice Boltzmann method on graphic processing units

机译:在图形处理单元上用多重弛豫时间格子Boltzmann方法模拟三维深腔中的流动不稳定性

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摘要

The D3Q19 multi relaxation time (MRT) lattice Boltzmann model is adopted to simulate the instability phenomenon within a three-dimensional cavity at various depth-width aspect ratios ranging from 1 to 3. The computations are conducted on a single node multi graphic processing unit (GPU) system, consisting of three nVIDIA M2070 devices using OpenMP. Results show that transition takes place between 1750 < Re_(cr) < 1950, for cubic cavity and 1100 < Re_(cr) < 1450, for deep cavity flows with aspect ratio 2 and 3. This indicates that an increase of the depth-width aspect ratio would induce the transition at lower Reynolds number and is consistent with the previous results for two-dimensional cavities, though the critical Reynolds number is approximately 75% lower for three dimensional cavity.
机译:采用D3Q19多重弛豫时间(MRT)格子Boltzmann模型来模拟三维腔内在1至3的各种深度-宽度纵横比下的不稳定性现象。计算是在单节点多图形处理单元上进行的( GPU)系统,由三个使用OpenMP的nVIDIA M2070设备组成。结果显示,对于深宽比为2和3的立方腔,过渡发生在1750

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