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首页> 外文期刊>Computer physics communications >High-performance dune modules for solving large-scale, strongly anisotropic elliptic problems with applications to aerospace composites
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High-performance dune modules for solving large-scale, strongly anisotropic elliptic problems with applications to aerospace composites

机译:用于解决大规模的高性能沙丘模块,在航空复合材料的应用中解决了大规模强烈的各向异性椭圆问题

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The key innovation in this paper is an open-source, high-performance iterative solver for high contrast, strongly anisotropic elliptic partial differential equations implemented within dune-pdelab. The iterative solver exploits a robust, scalable two-level additive Schwarz preconditioner, GenEO (Spillane et al., 2014). The development of this solver has been motivated by the need to overcome the limitations of commercially available modelling tools for solving structural analysis simulations in aerospace composite applications. Our software toolbox dune-composites encapsulates the mathematical complexities of the underlying packages within an efficient C++ framework, providing an application interface to our new high-performance solver. We illustrate its use on a range of industrially motivated examples, which should enable other scientists to build on and extend dune composites and the GenEO preconditioner for use in their own applications. We demonstrate the scalability of the solver on more than 15,000 cores of the UK national supercomputer ARCHER, solving an aerospace composite problem with over 200 million degrees of freedom in a few minutes. This scale of computation brings composites problems that would otherwise be unthinkable into the feasible range. To demonstrate the wider applicability of the new solver, we also confirm the robustness and scalability of the solver on SPE10, a challenging benchmark in subsurface flow/reservoir simulation.
机译:本文的关键创新是一种开源,高性能的迭代求解器,用于在Dune-Pdelab中实现的高对比度,强大的各向异性椭圆部分微分方程。迭代求解器利用强大,可扩展的两级添加剂Schwarz Preconditter,Geneo(Spillane等,2014)。该解决者的发展是有必要克服市售建模工具的局限性,以解决航空航天复合应用中的结构分析模拟的局限性。我们的软件工具箱Dune-Composites封装了高效的C ++框架内的基础包的数学复杂性,为我们的新型高性能求解器提供了应用程序界面。我们说明了在一系列工业上有动机的例子中的使用,这应该使其他科学家能够建立并扩展沙丘复合材料和Geneo预处理器以供自己的应用程序使用。我们展示了求解器对英国国家超级计算机弓箭手超过15,000个核心的可扩展性,解决了几分钟内超过2亿自由的航空航天综合问题。这种计算规模带来了复合材料问题,否则将是可行范围的不可想象的问题。为了展示新求解器的更广泛的适用性,我们还确认了SPE10上的求解器的鲁棒性和可扩展性,是地下流量/储存器模拟中有挑战性的基准。

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