首页> 外文会议>Supercomputing, ACM/IEEE 2002 Conference >Collaborative Simulation Grid: Multiscale Quantum-Mechanical/Classical Atomistic Simulations on Distributed PC Clusters in the US and Japan
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Collaborative Simulation Grid: Multiscale Quantum-Mechanical/Classical Atomistic Simulations on Distributed PC Clusters in the US and Japan

机译:协作仿真网格:在美国和日本的分布式PC群集上的多尺度量子力学/经典原子模拟

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A multidisciplinary,collaborative simulation has been performed on a Grid of geographically distributed PC clusters.The multiscale simulation approach seamlessly combines i) atomistic simulation based on the molecular dynamics (MD) method and ii) quantum mechanical (QM) calculation based on the density functional theory (DFT), so that accurate but less scalable computations are performed only where they are needed. The multiscale MD/QM simulation code has been Grid-enabled using i) a modular, additive hybridization scheme, ii) multiple QM clustering, and iii) computation/communication overlapping. The Gridified MD/QM simulation code has been used to study environmental effects of water molecules on fracture in silicon. A preliminary run of the code has achieved a parallel efficiency of 94% on 25 PCs distributed over 3 PC clusters in the US and Japan, and a larger test involving 154 processors on 5 distributed PC clusters is in progress.
机译:在地理分布PC集群的网格上进行了多学科协作仿真。多尺度仿真方法将i)基于分子动力学(MD)方法的原子模拟与ii)基于密度泛函的量子力学(QM)计算无缝地结合在一起理论(DFT),以便仅在需要的地方执行准确但可扩展性较低的计算。多尺度MD / QM仿真代码已使用以下功能实现网格化:i)模块化的加性杂交方案,ii)多个QM聚类,以及iii)计算/通信重叠。网格化的MD / QM模拟代码已用于研究水分子对硅断裂的环境影响。该代码的初步运行已在美国和日本的3个PC群集上分布的25台PC上实现了94%的并行效率,并且正在进行涉及5个分布式PC群集上的154个处理器的更大测试。

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