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首页> 外文期刊>International Journal for Numerical Methods in Engineering >An explicit discontinuous Galerkin method for non-linear solid dynamics: Formulation, parallel implementation and scalability properties
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An explicit discontinuous Galerkin method for non-linear solid dynamics: Formulation, parallel implementation and scalability properties

机译:非线性固体动力学的显式不连续Galerkin方法:公式化,并行实现和可伸缩性

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An explicit-dynamics spatially discontinuous Galerkin (DG) formulation for non-linear solid dynamics is proposed and implemented for parallel computation. DG methods have particular appeal in problems involving complex material response, e.g. non-local behavior and failure, as, even in the presence of discontinuities, they provide a rigorous means of ensuring both consistency and stability. In the proposed method, these are guaranteed: the former by the use of average numerical fluxes and the latter by the introduction of appropriate quadratic terms in the weak formulation. The semi-discrete system of ordinary differential equations is integrated in time using a conventional second-order central-difference explicit scheme. A stability criterion for the time integration algorithm, accounting for the influence of the DG discretization stability, is derived for the equivalent linearized system. This approach naturally tends itself to efficient parallel implementation. The resulting DG computational framework is implemented in three dimensions via specialized interface elements. The versatility, robustness and scalability of the overall computational approach are all demonstrated in problems involving stress-wave propagation and large plastic deformations. Copyright (c) 2007 John Wiley & Sons, Ltd.
机译:针对非线性固体动力学,提出并实现了显式动力学空间不连续的Galerkin(DG)公式,并实现了并行计算。 DG方法在涉及复杂材料响应的问题中具有特别的吸引力,例如非本地行为和故障,因为即使存在不连续性,它们也提供了确保一致性和稳定性的严格方法。在所提出的方法中,这些是可以保证的:前者通过使用平均数值通量,而后者通过在弱公式中引入适当的二次项。使用常规的二阶中心差分显式方案及时积分常微分方程的半离散系统。对于等效线性化系统,导出了考虑了DG离散化稳定性影响的时间积分算法的稳定性准则。这种方法自然会倾向于有效的并行实现。生成的DG计算框架通过专用接口元素在三个维度上实现。整个计算方法的多功能性,鲁棒性和可扩展性都在涉及应力波传播和大塑性变形的问题中得到了证明。版权所有(c)2007 John Wiley&Sons,Ltd.

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