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Improved coupling of finite shell elements and 3D boundary elements

机译:改进了有限壳单元和3D边界单元的耦合

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摘要

A strategy for the mixed-dimensional coupling of finite shell elements and 3D boundary elements is presented. The stiffness formulation for the boundary element domain is generated by the 3D symmetric Galerkin boundary element method and thus can be assembled to the global finite element formulation. Based on the equality of work at the coupling interface, coupling equations in an integral sense are derived for curved coupling interfaces and formulated as multipoint constraints in terms of kinematic quantities. Several examples show the highly accurate results compared to a strict kinematic coupling technique.
机译:提出了有限壳单元和3D边界单元的混合维耦合策略。边界单元域的刚度公式是通过3D对称Galerkin边界单元方法生成的,因此可以组装为整体有限元公式。基于耦合接口处的功相等,针对弯曲耦合接口导出了积分意义上的耦合方程,并将其表示为运动量方面的多点约束。与严格的运动学耦合技术相比,几个示例显示了高度准确的结果。

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