A cover-based contact detection approach for irregular convex polygons in discontinuous deformation analysis

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Authors

  • Xiaoying Zhuang
  • Fei Zheng
  • Hong Zheng
  • Yu-Yong Jiao
  • Timon Rabczuk
  • Peter Wriggers

External Research Organisations

  • Tongji University
  • Beijing University of Technology
  • China University of Geosciences
  • Ton Duc Thang University
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Details

Original languageEnglish
Pages (from-to)208-233
Number of pages26
JournalInternational Journal for Numerical and Analytical Methods in Geomechanics
Volume45
Issue number2
Publication statusPublished - 5 Jan 2021

Abstract

Irregular polygon shapes (eg, with small edges or small angles) are usually encountered in the contact simulation of discrete block systems. Treatment of irregular polygons in contact detection process has critical effects on the robustness and efficiency of the discontinuous computation approach. The present work proposes a cover-based strategy to detect and solve contacts of irregular convex polygons in a robust and efficient way. Contact constraints of two polygons are represented by vertex-edge and edge-vertex contact covers in 2D. Two loops, namely vertex-edge loop and edge-vertex loop, and two filter criteria, namely the entrance filter criterion and the distance filter criterion, are used to establish the potential contact cover list of two neighbor polygons. The initial active and closed contact covers are chosen based on block configuration at the beginning of the step and they are then updated in the open-close iteration process using proposed criteria. This strategy is implemented in discontinuous deformation analysis. The robustness of the proposed cover-based approach and the conventional type-based approach in handling contact of irregular blocks is verified first. Then, the contact analysis efficiency of the cover-based approach with different contact tolerances is evaluated. This cover-based method can be extended to 3D case for efficient and robust contact analysis of irregular polyhedral blocks.

Keywords

    contact cover, discontinuous deformation analysis, entrance block, irregular polygon, small angle, small edge

ASJC Scopus subject areas

Cite this

A cover-based contact detection approach for irregular convex polygons in discontinuous deformation analysis. / Zhuang, Xiaoying; Zheng, Fei; Zheng, Hong et al.
In: International Journal for Numerical and Analytical Methods in Geomechanics, Vol. 45, No. 2, 05.01.2021, p. 208-233.

Research output: Contribution to journalArticleResearchpeer review

Download
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abstract = "Irregular polygon shapes (eg, with small edges or small angles) are usually encountered in the contact simulation of discrete block systems. Treatment of irregular polygons in contact detection process has critical effects on the robustness and efficiency of the discontinuous computation approach. The present work proposes a cover-based strategy to detect and solve contacts of irregular convex polygons in a robust and efficient way. Contact constraints of two polygons are represented by vertex-edge and edge-vertex contact covers in 2D. Two loops, namely vertex-edge loop and edge-vertex loop, and two filter criteria, namely the entrance filter criterion and the distance filter criterion, are used to establish the potential contact cover list of two neighbor polygons. The initial active and closed contact covers are chosen based on block configuration at the beginning of the step and they are then updated in the open-close iteration process using proposed criteria. This strategy is implemented in discontinuous deformation analysis. The robustness of the proposed cover-based approach and the conventional type-based approach in handling contact of irregular blocks is verified first. Then, the contact analysis efficiency of the cover-based approach with different contact tolerances is evaluated. This cover-based method can be extended to 3D case for efficient and robust contact analysis of irregular polyhedral blocks.",
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AU - Zhuang, Xiaoying

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AU - Zheng, Hong

AU - Jiao, Yu-Yong

AU - Rabczuk, Timon

AU - Wriggers, Peter

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