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The multi-domain hybrid boundary node method for 3D elasticity

机译:3D弹性的多域混合边界节点方法

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In this paper, a multi-domain technique for 3D elasticity problems is derived from the hybrid boundary node method (Hybrid BNM). The Hybrid BNM is based on the modified variational principle and the Moving Least Squares (MLS) approximation. It does not require a boundary element mesh, neither for the purpose of interpolation of the solution variables nor for the integration of energy. This method can reduce the human-labor costs of meshing, especially for complex construction. This paper presents a further development of the Hybrid BNM for multi-domain analysis in 3D elasticity. Using the equilibrium and continuity conditions on the interfaces, the final algebraic equation is obtained by assembling the algebraic equation for each single sub-domain. The proposed multi-domain technique is capable to deal with interface and multi-medium problems and results in a block sparsity of the coefficient matrix. Numerical examples demonstrate the accuracy of the proposed multi-domain technique.
机译:在本文中,从混合边界节点方法(Hybrid BNM)推导了一种用于3D弹性问题的多域技术。混合BNM基于修改的变分原理和移动最小二乘(MLS)近似。它既不需要边界元素网格,也不需要插值求解变量,也不需要积分能量。这种方法可以减少网格划分的人工成本,尤其是对于复杂的结构。本文提出了用于3D弹性多域分析的Hybrid BNM的进一步开发。使用界面上的平衡和连续性条件,通过为每个子域组合代数方程来获得最终代数方程。所提出的多域技术能够处理界面和多媒体问题,并导致系数矩阵的块稀疏性。数值示例证明了所提出的多域技术的准确性。

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