首页> 外文期刊>International Journal of High Performance Computing Applications >Highly efficient lattice Boltzmann multiphase simulations of immiscible fluids at high-density ratios on CPUs and GPUs through code generation
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Highly efficient lattice Boltzmann multiphase simulations of immiscible fluids at high-density ratios on CPUs and GPUs through code generation

机译:通过代码生成,在CPU和GPU上的高密度比下不混溶的液体模拟的高效晶格Boltzmann多相模拟

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摘要

A high-performance implementation of a multiphase lattice Boltzmann method based on the conservative Allen-Cahn model supporting high-density ratios and high Reynolds numbers is presented. Meta-programming techniques are used to generate optimized code for CPUs and GPUs automatically. The coupled model is specified in a high-level symbolic description and optimized through automatic transformations. The memory footprint of the resulting algorithm is reduced through the fusion of compute kernels. A roofline analysis demonstrates the excellent efficiency of the generated code on a single GPU. The resulting single GPU code has been integrated into the multiphysics framework waLBerla to run massively parallel simulations on large domains. Communication hiding and GPUDirect-enabled MPI yield near-perfect scaling behavior. Scaling experiments are conducted on the Piz Daint supercomputer with up to 2048 GPUs, simulating several hundred fully resolved bubbles. Further, validation of the implementation is shown in a physically relevant scenario—a three-dimensional rising air bubble in water.
机译:提出了基于支持高密度比和高雷诺数的保守艾伦-CAHN模型的多相晶格Boltzmann方法的高性能实现。元编程技术用于自动为CPU和GPU生成优化的代码。耦合模型在高级符号描述中指定并通过自动变换优化。通过计算核的融合,减少了所得算法的存储空间。屋顶分析展示了单个GPU上生成的代码的优异效率。由此产生的单个GPU代码已集成到MultiphySics Framework Walberla中,以在大型域上运行大规模并行模拟。通信隐藏和GPudirect的MPI产量接近完美的缩放行为。缩放实验是在Piz Daint超级计算机上进行的,高达2048个GPU,模拟了几百个完全分辨的气泡。此外,在物理相关的场景中示出了实施方案 - 水中的三维上升气泡。

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