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基于微极连续体理论视角的Mohr-Coulomb基质土的土石混合体边坡稳定性及破坏模式分析 被引量:9
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作者 陈曦 唐建彬 +1 位作者 崔柳生 刘宗祺 《Journal of Central South University》 SCIE EI CAS CSCD 2023年第10期3450-3466,共17页
针对土石混合体边坡稳定性和破坏模式分析,提出了一种基于微极Mohr-Coulomb(MC)模型的二阶锥规划微极连续体有限元法(mpcFEM-SOCP)。以两个土石混合体边坡为例,验证了所提方法的有效性和优越性。数值分析表明,块石“侵入”潜在滑面会增... 针对土石混合体边坡稳定性和破坏模式分析,提出了一种基于微极Mohr-Coulomb(MC)模型的二阶锥规划微极连续体有限元法(mpcFEM-SOCP)。以两个土石混合体边坡为例,验证了所提方法的有效性和优越性。数值分析表明,块石“侵入”潜在滑面会增加刚性基础的极限承载力以及边坡的稳定性。与二阶锥规划经典连续体有限元法(FEM-SOCP)相比,在某些情况下mpcFEM-SOCP可以揭示不同的土石混合体边坡破坏机制。通过FEM-SOCP和mpcFEM-SOCP可以观察到,对于方形簇块石土石混合体边坡,分散的块石会使土石混合体边坡破坏模式更为复杂;与Pybimstab程序包中(假设单滑移面)的广义极限平衡方法相比,FEM-SOCP和mpcFEM-SOCP会提供手指分叉式滑移面;通过关联基质土颗粒特性和宏观应变局部化行为的内部特征长度lc能够较好地模拟基质土滑移面的宽度。 展开更多
关键词 土石混合边坡 基质含块石结构 微极连续体 随机分布的块石 曲折滑裂面 块石积比
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Geotechnical stability analysis considering strain softening using micro-polar continuum finite element method 被引量:6
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作者 CHEN Xi WANG Dong-yong +2 位作者 TANG Jian-bin MA Wen-chen LIU Yong 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第1期297-310,共14页
Geotechnical stability analyses based on classical continuum may lead to remarkable underestimations on geotechnical safety.To attain better estimations on geotechnical stability,the micro-polar continuum is employed ... Geotechnical stability analyses based on classical continuum may lead to remarkable underestimations on geotechnical safety.To attain better estimations on geotechnical stability,the micro-polar continuum is employed so that its internal characteristic length(lc)can be utilized to model the shear band width.Based on two soil slope examples,the role of internal characteristic length in modeling the shear band width of geomaterial is investigated by the second-order cone programming optimized micro-polar continuum finite element method.It is recognized that the underestimation on factor of safety(FOS)calculated from the classical continuum tends to be more pronounced with the increase of lc.When the micro-polar continuum is applied,the shear band dominated by lc is almost kept unaffected as long as the adopted meshes are fine enough,but it does not generally present a slip surface like in the cases from the classical continuum,indicating that the micro-polar continuum is capable of capturing the non-local geotechnical failure characteristic.Due to the coupling effects of lc and strain softening,softening behavior of geomaterial tends to be postponed.Additionally,the bearing capacity of a geotechnical system may be significantly underestimated,if the effects of lc are not modeled or considered in numerical analyses. 展开更多
关键词 slope stability strain localization non-local geotechnical failure micro-polar continuum internal characteristic length
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