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Elasto-plastic coupling analysis of circular openings in elasto-brittle-plastic rock mass

机译:弹塑性脆性岩体中圆形孔的弹塑性耦合分析

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This paper deals with elasto-plastic coupling solutions for the prediction of displacements around circular openings in elasto-brittle-plastic rock mass subject to hydrostatic stress. Both linear Mohr-Coulomb criterion and nonlinear Hoek-Brown criterion on the basis of a non-associated flow rule are considered. The restrictive condition between strength parameters and Young's modulus in post-failure region for rock materials is theoretically established. Meanwhile, the proposed restrictive condition is validated by FLAC3Dcode that the advanced elasto-plastic coupling model (EPCM) based on Mohr-Coulomb criterion is merged in. Finally, the elasto-plastic coupling dimensionless displacements of circular opening in elasto-brittle-plastic rock mass are analyzed with different deterioration degree of Young's modulus using two kinds of rocks. The results show that the deformation of rock mass increases obviously with the decrease of Young's modulus in the plastic region, but Young's modulus has little influence on the plastic region radius and stresses distribution form.
机译:本文研究了弹塑性耦合解决方案,以预测受静水应力作用的弹塑性脆性岩体中圆形开口周围的位移。基于非关联流规则,同时考虑了线性Mohr-Coulomb准则和非线性Hoek-Brown准则。理论上建立了岩石材料破坏后强度参数与杨氏模量之间的限制条件。同时,通过FLAC3Dcode对提出的约束条件进行了验证,将基于Mohr-Coulomb准则的高级弹塑性耦合模型(EPCM)进行了合并。最后,弹塑性脆性岩石中圆孔的弹塑性耦合无量纲位移用两种岩石分析了杨氏模量不同劣化程度的质量。结果表明,塑性区的岩体变形随杨氏模量的减小而明显增加,但杨氏模量对塑性区半径和应力分布形式的影响较小。

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