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Patch coupling in isogeometric analysis of solids in boundary representation using a mortar approach

机译:采用砂浆方法在边界表示中固体异构分析的贴片耦合

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This contribution is concerned with a coupling approach for nonconforming NURBS patches in the framework of an isogeometric formulation for solids in boundary representation. The boundary representation modeling technique in CAD is the starting point of this approach. We parameterize the solid according to the scaled boundary finite element method and employ NURBS basis functions for the approximation of the solution. Therefore, solid surfaces consist of several sections, which can be regarded as patches and discretized independently. The main objective of this study is to derive an approach for the connection of independent sections in order to allow for local refinement and thus an accurate and efficient discretization of the computational domain. Nonconforming sections are coupled with a mortar approach within a master-slave framework. The coupling of adjacent sections ensures the equality of mutual deformations along the interface in a weak sense and is enforced by constraining the NURBS basis functions on the interface. We apply this approach to nonlinear problems in two dimensions and compare the results with conforming discretizations.
机译:该贡献涉及用于在边界表示中固体的异步制剂的框架中的不合适NURBS贴片的耦合方法。 CAD中的边界表示建模技术是这种方法的起点。我们根据缩放的边界有限元方法参数化实体,并采用NURBS基本功能进行解决方案的近似。因此,固体表面由几个部分组成,其可以被视为斑块并独立离散化。本研究的主要目的是推导出独立部分的连接方法,以便允许本地改进,从而准确和有效地离散化计算域。不合格部分与主从框架内的砂浆方法耦合。相邻部分的耦合确保了弱道沿界面的相互变形的平等,并通过在接口上限制NURBS基本功能来强制执行。我们将这种方法应用于两个维度的非线性问题,并将结果与​​符合来的离散化进行比较。

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