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Isogeometric analysis of large thin shell structures based on weak coupling of substructures with unstructured T-splines patches

机译:基于子结构与非结构化T样条补丁的弱耦合的大型薄壳结构的等几何分析

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摘要

In this paper, a new isogeometric analysis (IGA) method is proposed for large thin shell structures based on the weak coupling of substructures with unstructured T-splines patches. Firstly, the Kirchhoff-Love shell element is developed based on unstructured T-splines for discretizing the analysis models of large thin shell structures. Subsequently, the substructuring method is adopted to divide the analysis model of a large thin shell structure into several substructures composed of multiple unstructured T-splines patches. The approach for the weak coupling of substructures is introduced in detail. To improve the IGA efficiency of large thin shell structures, a dimensionality reduction method is put forward to reduce the stiffness matrix of an IGA model by firstly condensing the interior control points of its substructures' matrices and then integrating the condensed substructures into a whole system. The effectiveness and applicability of the proposed IGA method with substructuring are verified by two examples.
机译:本文基于子结构与非结构化T样条斑块的弱耦合,针对大型薄壳结构提出了一种新的等几何分析(IGA)方法。首先,基于非结构化T样条曲线开发了Kirchhoff-Love壳单元,用于离散大型薄壳结构的分析模型。随后,采用子构造方法将大型薄壳结构的分析模型分为多个由多个非结构化T样条斑块组成的子结构。详细介绍了子结构弱耦合的方法。为了提高大型薄壳结构的IGA效率,提出了一种降维方法,通过首先压缩其子结构矩阵的内部控制点,然后将压缩后的子结构集成到整个系统中,来减小IGA模型的刚度矩阵。通过两个例子验证了所提出的IGA方法与子结构的有效性和适用性。

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