分布式混合地震工程试验:地震动网格应用经验

L. Pearlman, C. Kesselman, S. Gullapalli, B. Spencer, J. Futrelle, K. Ricker, Ian T Foster, P. Hubbard, C. Severance
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引用次数: 60

摘要

地震工程师传统上通过计算模拟或物理实验来研究结构的行为。最近,提出了一种新的混合方法,允许将测试分解为独立的子结构,这些子结构可以位于不同的测试设施中,单独测试,并通过计算模拟集成。我们描述了一种基于网格的架构,用于执行这种新颖的分布式混合计算/物理实验。我们讨论了这种极具挑战性的网格技术应用的需求,描述了我们的架构和实现,并讨论了我们在前所未有的地震工程测试中应用该架构的经验,该测试将伊利诺斯州和科罗拉多州的大规模物理实验与计算模拟相结合。我们的研究结果指出了网格技术对工程实践的显著影响,也有助于我们理解如何构建和部署有效的网格应用程序。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed hybrid earthquake engineering experiments: experiences with a ground-shaking grid application
Earthquake engineers have traditionally investigated the behavior of structures with either computational simulations or physical experiments. Recently, a new hybrid approach has been proposed that allows tests to be decomposed into independent substructures that can be located at different test facilities, tested separately, and integrated via a computational simulation. We describe a grid-based architecture for performing such novel distributed hybrid computational/physical experiments. We discuss the requirements that underlie this extremely challenging application of grid technologies, describe our architecture and implementation, and discuss our experiences with the application of this architecture within an unprecedented earthquake engineering test that coupled large-scale physical experiments in Illinois and Colorado with a computational simulation. Our results point to the remarkable impacts that grid technologies can have on the practice of engineering, and also contribute to our understanding of how to build and deploy effective grid applications.
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