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Adaptive multi-patch isogeometric analysis based on locally refined B-splines

机译:基于局部精修B样条的自适应多面体等几何分析

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We present an effective adaptive analysis procedure in terms of isogeometric analysis (IGA) based on locally refined (LR) B-splines for two-dimensional elasticity problems. One major advantage of the adopted LR B-splines over B-splines and nonuniform rational B-splines (NURBS) is the local refinement, which makes it highly suitable for adaptive analysis. The Zienkiewicz- Zhu estimation is used on error estimator based local refinement. The local refinement is implemented by the structured mesh refinement strategy according to the posteriori error estimator. The proposed methodology is further extended to deal with multiple patches, which are applied to represent complicated shapes of structures, and the Nitsche's method is employed for coupling patches among multiple patches in the present adaptive IGA. The algorithm for adaptive IGA on multiple patches is also derived. We provide a series of numerical examples for benchmarks and complicated configurations to demonstrate the flexibility and accuracy of the model as well as the significant enhancement in adaptive IGA based on LR B-splines. A careful comparison of the numerical results suggests that the adaptive local refinement strategy offers faster convergence rate than that of uniform refinement strategy. (C) 2018 Elsevier B.V. All rights reserved.
机译:我们提出了一种有效的自适应分析程序,该程序基于二维弹性问题的基于局部精炼(LR)B样条的等几何分析(IGA)。相对于B样条和非均匀有理B样条(NURBS),所采用的LR B样条的一个主要优点是局部细化,这使其非常适合于自适应分析。 Zienkiewicz-Zhu估计用于基于误差估计的局部细化。根据后验误差估计器,通过结构化网格细化策略实现局部细化。所提出的方法被进一步扩展以处理多个补丁,这些补丁被用来表示结构的复杂形状,并且在本发明的自适应IGA中,Nitsche方法被用于在多个补丁之间耦合补丁。还推导了针对多个补丁的自适应IGA算法。我们提供了一系列用于基准测试和复杂配置的数值示例,以展示模型的灵活性和准确性,以及基于LR B样条曲线的自适应IGA的显着增强。数值结果的仔细比较表明,自适应局部细化策略比统一细化策略提供了更快的收敛速度。 (C)2018 Elsevier B.V.保留所有权利。

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