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Efficient extraction of hierarchical B-Splines for local refinement and coarsening of Isogeometric Analysis

机译:高效提取分层B样条,用于局部细化和异诊分析粗化

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The main motivation for hierarchical B-Splines in Isogeometric Analysis is to perform a local refinement that is globally not a tensor product. Compared to standard knot insertion, this allows to increase refinement locality. Moreover, the implementation of hierarchical refinement on existing codes can be facilitated by Bezier extraction. This approach was initially developed for unrefined patches and then extended to local refinement. In case of B-Spline patches that are not locally refined, extraction and projection algorithms can be optimized by leveraging the tensor structure. However, these optimizations are not straightforwardly applicable to hierarchical B-Splines.In this contribution, we show an approach where all extraction operations are formulated to work directly on the univariate extraction operators, without explicitly computing and storing the full tensor product. In particular, we consider the extraction of functions, and projection of degrees of freedom for refinement and coarsening. A slightly modified Bezier projection is proposed to fully exploit the developed algorithms. We finally compare our approach to an explicit computation of the extraction operator in both a linear transient and a nonlinear example. (C) 2020 Elsevier B.V. All rights reserved.
机译:异常分析中的分层B样条的主要动机是执行全球不是张量产品的本地细化。与标准结插入相比,这允许增加细化的局部性。此外,通过Bezier提取可以促进现有代码上的分层改进的实施。最初为未精制的补丁开发了这种方法,然后扩展到本地改进。在不局部精制的B样条贴片的情况下,通过利用张量结构,可以优化提取和投影算法。然而,这些优化不适用于分层B-Splines。在这种贡献中,我们示出了一种方法,其中所有提取操作都配制成直接在单变量提取运营商上工作,而无需明确计算和存储全张量产品。特别是,我们考虑函数的提取,并投射精制和粗化的自由度。提出了一种略微改进的Bezier投影以充分利用开发算法。我们最终将我们的方法与线性瞬态和非线性示例中的提取运算符的显式计算进行了比较。 (c)2020 Elsevier B.v.保留所有权利。

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