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A Parallel Framework for Explicit FEM

机译:显式FEM的并行框架

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As a part of an ongoing effort to develop a "standard library" for scientific and engineering parallel applications, we have developed a preliminary finite element framework. This framework allows an application scientist interested in modeling structural properties of materials, including dynamic behavior such as crack propagation, to develop codes that embody their modeling techniques without having to pay attention to the parallelization process. The resultant code modularly separates parallel implementation techniques from numerical algorithms. As the framework builds upon an object-based load balancing framework, it allows the resultant applications to automatically adapt to load imbalances resulting from the application or the environment (e.g. timeshared clusters). This paper presents results from the first version of the framework, and demonstrates results on a crack propagation application.
机译:作为开发针对科学和工程并行应用程序的“标准库”的持续努力的一部分,我们已经开发了初步的有限元框架。该框架允许对材料的结构特性建模(包括诸如裂纹扩展之类的动态行为)感兴趣的应用科学家开发出体现其建模技术的代码,而无需关注并行化过程。生成的代码以模块化方式将并行实现技术与数值算法分开。由于该框架基于基于对象的负载平衡框架而构建,因此它允许生成的应用程序自动适应由应用程序或环境(例如分时群集)导致的负载不平衡。本文介绍了框架第一版的结果,并演示了裂纹扩展应用程序的结果。

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