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使用COSMOS/M对模型进行局部几何网格细化 被引量:1
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作者 焦明海 雒兴刚 胡伟 《CAD/CAM与制造业信息化》 2002年第11期47-48,共2页
关键词 几何网格细化 有限元分析软件 几何模型
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Numerical manifold method based on isogeometric analysis 被引量:4
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作者 ZHANG YouLiang LIU DengXue TAN Fei 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第9期1520-1532,共13页
In this study, numerical manifold method(NMM) coupled with non-uniform rational B-splines(NURBS) and T-splines in the context of isogeometric analysis is proposed to allow for the treatments of complex geometries and ... In this study, numerical manifold method(NMM) coupled with non-uniform rational B-splines(NURBS) and T-splines in the context of isogeometric analysis is proposed to allow for the treatments of complex geometries and local refinement. Computational formula for a 9-node NMM based on quadratic B-splines is derived. In order to exactly represent some common free-form shapes such as circles, arcs, and ellipsoids, quadratic non-uniform rational B-splines(NURBS) are introduced into NMM. The coordinate transformation based on the basis function of NURBS is established to enable exact integration for the manifold elements containing those shapes. For the case of crack propagation problems where singular fields around crack tips exist, local refinement technique by the application of T-spline discretizations is incorporated into NMM, which facilitates a truly local refinement without extending the entire row of control points. A local refinement strategy for the 4-node mathematical cover mesh based on T-splines and Lagrange interpolation polynomial is proposed. Results from numerical examples show that the 9-node NMM based on NURBS has higher accuracies. The coordinate transformation based on the NURBS basis function improves the accuracy of NMM by exact integration. The local mesh refinement using T-splines reduces the number of degrees of freedom while maintaining calculation accuracy at the same time. 展开更多
关键词 numerical manifold method (NMM) isogeometric analysis local refinement mathematical cover
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