An Angle-Based Method Dealing with Vertex–Vertex Contact in the Two-Dimensional Discontinuous Deformation Analysis (DDA)

被引:1
|
作者
Huo Fan
Siming He
机构
[1] University of Chinese Academy of Sciences,Key Laboratory of Mountain Hazards and Surface Process
[2] Chinese Academy of Science,Institute of Mountain Hazards and Environment
[3] Chinese Academy of Sciences,Center for Excellence in Tibetan Plateau Earth Sciences
[4] Chinese Academy of Sciences,undefined
来源
关键词
DDA; Vertex–vertex contact; Indeterminacy; Pretreatment; Angle-based method;
D O I
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中图分类号
学科分类号
摘要
Due to the discontinuity of the direction of a normal vector at the corner, vertex–vertex contact is indeterminate in numerical modelling. Two classes are indeterminate in two-dimensional discontinuous deformation analysis (DDA), designated as “genuine indeterminacy” and “pseudo indeterminacy”. While examining these indeterminacies, it is necessary to pre-process quasi-vertex–vertex contact and determine contact or entrance edges. On one hand, improper pre-processing not only changes the equilibrium equations of the system, but also increases the burden on open–close iteration. On the other hand, there are two kinds of quasi-contact edges, i.e. the same and different block quasi-contact edges. Certain previous distance-based methods, which are used to seek the correct entrance edge, lead to some forced contacts, including vertex–vertex or vertex–edge. New pre-processing and angle-based methods for determining entrance edges are developed in this study. Additionally, the new concept of strengthening the movement trend of blocks is presented in DDA. The new pretreatment method combining the angle-based method and a strategy for strengthening the movement trend of blocks are intended to reduce forced contacts, maintain the movement trend of blocks, and speed up open–close iterations to a certain extent. Furthermore, the new method only depends on the orientation of quasi-contact edges and the movement trend of convex corners. The effectiveness of these improvements is verified by translational motion, rotation trend, and time-step size effect tests.
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收藏
页码:2031 / 2043
页数:12
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