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Massively Parallel Implementation of 3D-RISM Calculation with Volumetric 3D-FFT

机译:使用体积3D-FFT大规模并行实施3D-RISM计算

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A new three-dimensional reference interaction site model (3D-RISM) program for massively parallel machines combined with the volumetric 3D fast Fourier transform (3D-FFT) was developed, and tested on the RIKEN K supercomputer. The ordinary parallel 3D-RISM program has a limitation on the number of parallelizations because of the limitations of the slab-type 3D-FFT. The volumetric 3D-FFT relieves this limitation drastically. We tested the 3D-RISM calculation on the large and fine calculation cell (2048~3 grid points) on 16,384 nodes, each having eight CPU cores. The new 3D-RISM program achieved excellent scalability to the parallelization, running on the RIKEN K supercomputer. As a benchmark application, we employed the program, combined with molecular dynamics simulation, to analyze the oligomerization process of chymotrypsin Inhibitor 2 mutant. The results demonstrate that the massive parallel 3D-RISM program is effective to analyze the hydration properties of the large biomolecular systems.
机译:针对大型并行机,结合体积3D快速傅里叶变换(3D-FFT),开发了一种新的三维参考交互站点模型(3D-RISM)程序,并在RIKEN K超级计算机上进行了测试。由于平板型3D-FFT的局限性,普通的并行3D-RISM程序对并行化次数有限制。体积式3D-FFT大大缓解了这一限制。我们在16384个节点的大型和精细计算单元(2048〜3个网格点)上测试了3D-RISM计算,每个节点都有八个CPU内核。新的3D-RISM程序在RIKEN K超级计算机上运行,​​具有出色的并行扩展性。作为基准应用程序,我们使用了该程序并结合了分子动力学模拟来分析胰凝乳蛋白酶抑制剂2突变体的低聚过程。结果表明,大规模并行3D-RISM程序可有效分析大型生物分子系统的水合特性。

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