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Discontinuous Deformation Analysis Based on Wachspress Interpolation Function for Detailed Stress Distribution

机译:基于Wachspress插值函数的不连续变形分析,用于详细的应力分布

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In the original discontinuous deformation analysis (DDA) method, the complete first-order displacement function is used to describe block movement and deformation, which induce constant stress and strain throughout the block. To achieve a more detailed stress distribution, Wachspress interpolation displacement function is employed to express the displacement of blocks in DDA, and the interactions between blocks are still governed under the original DDA. Displacements of the vertexes of all blocks constitute new freedom vectors, and the stiffness and force matrix formulations are derived again. In the new formulation, Wachspress interpolation ensures that the edges of the blocks are straight; therefore, contact detection can be processed based on the original DDA. Several classical examples are analyzed. The results show that the new formulation obtains similar configurations as the original DDA but provides more detailed and continuous stress distributions within block element.
机译:在原始的不连续变形分析(DDA)方法中,完整的一阶位移函数用于描述块体的运动和变形,从而在整个块体中引起恒定的应力和应变。为了获得更详细的应力分布,使用Wachspress插值位移函数来表示DDA中块的位移,并且块之间的相互作用仍受原始DDA支配。所有块的顶点的位移构成了新的自由矢量,并且刚度和力矩阵公式再次被导出。在新的公式中,Wachspress插值可确保块的边缘是直的。因此,可以基于原始DDA处理联系人检测。分析了几个经典示例。结果表明,新配方获得了与原始DDA相似的构型,但在块单元内提供了更详细和连续的应力分布。

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