首页> 外文期刊>Advances in Mechanical Engineering >HACPar: An efficient parallel multiscale framework for hybrid atomistic–continuum simulation at the micro- and nanoscale:
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HACPar: An efficient parallel multiscale framework for hybrid atomistic–continuum simulation at the micro- and nanoscale:

机译:HACPar:一个有效的并行多尺度框架,用于在微米和纳米尺度上进行混合原子连续谱模拟:

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摘要

The hybrid atomistic–continuum coupling method based on domain decomposition serves as an important tool for the microfluidic simulation. However, major modifications to existing codes are often required to enable such simulations, which pose significant difficulties. In this article, in order to provide an efficient and easy-to-use software framework for field users, we propose a hybrid atomistic–continuum parallel coupling framework, named HACPar, based on open-source software platforms. We abstract the software architecture of the hybrid atomistic–continuum coupling framework based on geometric decomposition for the first time, demonstrate the detailed implementation of the framework, and present deep research on the coupling-oriented parallel issues which may improve the flexibility and efficiency of other multiscale parallel applications. The benchmark cases verify the correctness and efficiency of our HACPar framework. The benchmark results show that the scalability of the hybrid simulations is reac...
机译:基于域分解的混合原子连续体耦合方法是微流模拟的重要工具。然而,经常需要对现有代码进行重大修改以实现这种模拟,这带来了很大的困难。在本文中,为了为现场用户提供一种高效且易于使用的软件框架,我们提出了一个基于开放源代码软件平台的混合原子连续体并行耦合框架HACPar。我们首次抽象了基于几何分解的混合原子连续体耦合框架的软件架构,展示了该框架的详细实现,并针对耦合性并行问题进行了深入研究,这可能会提高其他问题的灵活性和效率。多尺度并行应用。这些基准案例验证了我们的HACPar框架的正确性和效率。基准测试结果表明,混合仿真的可扩展性是可识别的。

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