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Three-dimensional spherical discontinuous deformation analysis using second-order cone programming
Abstract In this paper, a new formulation of three-dimensional spherical discontinuous deformation analysis (DDA) based on second-order cone programming has been proposed. Artificial springs with open-close iteration used in classic DDA have been removed, given that improper stiffness parameters might cause numerical problems. Furthermore, to account for irregular granular shapes, a rolling resistance model is incorporated in the variational formulation. The proposed formulation can be cast into a standard second-order cone programming program, which can be solved using efficient off-the-shelf optimisation solvers. The proposed approach is validated by a series of numerical examples.
Three-dimensional spherical discontinuous deformation analysis using second-order cone programming
Abstract In this paper, a new formulation of three-dimensional spherical discontinuous deformation analysis (DDA) based on second-order cone programming has been proposed. Artificial springs with open-close iteration used in classic DDA have been removed, given that improper stiffness parameters might cause numerical problems. Furthermore, to account for irregular granular shapes, a rolling resistance model is incorporated in the variational formulation. The proposed formulation can be cast into a standard second-order cone programming program, which can be solved using efficient off-the-shelf optimisation solvers. The proposed approach is validated by a series of numerical examples.
Three-dimensional spherical discontinuous deformation analysis using second-order cone programming
Meng, Jingjing (Autor:in) / Cao, Ping (Autor:in) / Huang, Jinsong (Autor:in) / Lin, Hang (Autor:in) / Li, Kaihui (Autor:in) / Cao, Rihong (Autor:in)
Computers and Geotechnics ; 112 ; 319-328
17.04.2019
10 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
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