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A new variational self-regular traction-BEM formulation for inter-element continuity of displacement derivatives

机译:位移导数单元间连续性的变分自规则牵引BEM新公式

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In this work, a non-symmetric variational approach is derived to enforce C 1,α continuity at inter-element nodes for the self-regular traction-BIE. This variational approach uses only Lagrangian C 0 elements. Two separate algorithms are derived. The first one enforces C 1,α continuity at smooth inter-element nodes, and the second enforces continuity of displacement derivatives in global coordinates at corner nodes, where C 1,α continuity cannot be enforced. The variational formulation for the traction-BIE is implemented in this work for two elastostatics problems with various discretizations and polynomial interpolants. Local and global measures of the discretization error are obtained by means of an error estimator recently derived by the authors. Comparisons are also made with the displacement-BIE, which does not require C 1,α continuity for the displacement. The lack of smoothness of the displacement derivatives at the inter-element nodes is shown to be an important source of both local and global error for the traction-BIE formulation, especially for quadratic elements. The accuracy of the boundary solution obtained from the traction-BIE improves significantly when C 1,α continuity is enforced where possible, i.e., at the smooth inter-element nodes only.
机译:在这项工作中,推导了一种非对称变分方法来在自规则牵引-BIE的元素间节点处强制执行C 1,α连续性。这种变分方法仅使用Lagrangian C 0 元素。导出了两个单独的算法。第一个在光滑的元素间节点处强制执行C 1,α连续性,第二个在角节点处的全局坐标中强制执行位移导数的连续性,而其中C 1,α连续性无法强制执行。在这项工作中,针对具有各种离散化和多项式内插的两个弹性静力学问题,采用了牵引BIE的变分公式。作者最近通过误差估计器获得了离散化误差的局部和全局度量。还与位移BIE进行了比较,位移BIE不需要C 1,α连续性。元素间节点处位移导数缺乏平滑性,这是导致牵引BIE公式(尤其是二次元)局部和全局误差的重要原因。当在可能的情况下(即仅在光滑的元素内部节点处)强制执行C 1,α连续性时,从牵引力BIE获得的边界解的精度会显着提高。

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