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Advancing a distributed multi-scale computing framework for large-scale high-throughput discovery in materials science

机译:推进用于材料科学中大规模高通量发现的分布式多尺度计算框架

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摘要

We describe the development of a large-scale high-throughput application for discovery in materials science. Our point of departure is a computational framework for distributed multi-scale computation. We augment the original framework with a specialized module whose role is to route evaluation requests needed by the high-throughput application to a collection of available computational resources. We evaluate the feasibility and performance of the resulting high-throughput computational framework by carrying out a high-throughput study of battery solvents. Our results indicate that distributed multi-scale computing, by virtue of its adaptive nature, is particularly well-suited for building high-throughput applications.
机译:我们描述了用于材料科学发现的大规模高通量应用程序的开发。我们的出发点是用于分布式多尺度计算的计算框架。我们使用专门的模块扩展了原始框架,该模块的作用是将高通量应用程序所需的评估请求路由到可用的计算资源的集合。我们通过对电池溶剂进行高通量研究来评估由此产生的高通量计算框架的可行性和性能。我们的结果表明,分布式多尺度计算凭借其自适应特性,特别适合于构建高吞吐量应用程序。

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