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International Conference on Computational Science, ICCS 2012 A distributed multiscale computation of a tightly coupled model using the Multiscale Modeling Language.

机译:国际计算科学会议,ICCS 2012使用多尺度建模语言的紧密耦合模型的分布式多尺度计算。

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Nature is observed at all scales; with multiscale modeling, scientists bring together several scales for a holistic analysis of a phenomenon. The models on these different scales may require significant but also heterogeneous computational resources, creating the need for distributed multiscale computing. A particularly demanding type of multiscale models, tightly coupled, brings with it a number of theoretical and practical issues. In this contribution, a tightly coupled model of in-stent restenosis is first theoretically examined for its multiscale merits using the Multiscale Modeling Language (MML); this is aided by a toolchain consisting of MAPPER Memory (MaMe), the Multiscale Application Designer (MAD), and Gridspace Experiment Workbench. It is implemented and executed with the general Multiscale Coupling Library and Environment(MUSCLE). Finally, it is scheduled, amongst heterogeneous infrastructures using the QCG-Broker. This marks the first occasion that a tightly coupled application uses distributed multiscale computing in such a general way.
机译:所有鳞片都观察到性质;通过多尺度造型,科学家们将多种尺度聚集在一起,以实现对现象的整体分析。这些不同尺度上的模型可能需要重要但也是异构的计算资源,从而创造了对分布式多尺度计算的需求。特别要求的多尺度模型类型,紧密耦合,带来了一些理论和实际问题。在这一贡献中,首先使用多尺度建模语言(MML)为其多尺度优点进行理论上检查的紧密耦合模型;这是由由Mapper Memory(MAME),MultiScale Application Designer(Mad)和网格空间实验工作台组成的工具链。它是用一般的多尺度耦合库和环境(肌肉)实现和执行。最后,使用QCG-Broker在异构基础设施中进行安排。这标志着一个紧密耦合的应用程序以这种通用方式使用分布式多尺度计算的第一个场合。

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