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非线性破坏准则下浅埋隧道掌子面三维被动稳定性能耗分析改进方法
引用本文:李得建,赵炼恒,杨 峰,程 肖.非线性破坏准则下浅埋隧道掌子面三维被动稳定性能耗分析改进方法[J].岩石力学与工程学报,2016,35(4):743-752.
作者姓名:李得建  赵炼恒  杨 峰  程 肖
作者单位:(中南大学 土木工程学院,湖南 长沙 410075)
摘    要: 通过引入圆锥椭圆截交线计算公式,改进浅埋隧道掌子面三维被动破坏多椭圆锥体几何参数的计算方法。基于非线性破坏准则和极限分析上限法,推导浅埋隧道掌子面三维被动支护力的上限表达式,并进一步采用非线性规划程序优化计算获得了极限支护力最优上限解。通过对比分析,验证本文方法的可靠性;同时分析非线性抗剪强度参数对被动破坏极限支护力和破坏模式的影响,并绘制相应的破坏模式图。研究表明:被动破坏极限支护力与地面超载?s及地层容重?大致呈线性变化,而与非线性参数m、量纲一化的参数c0/?t及超负荷比C/D呈非线性变化;非线性参数m、量纲一化的参数c0/?t和超负荷比C/D对破坏模式影响显著,而地面超载?s对破坏模式影响则较小。研究成果为隧道掌子面稳定性分析提供一种新思路,进一步完善了隧道掌子面稳定性评价体系。

关 键 词:隧道工程隧道掌子面被动破坏非线性破坏准则极限分析上限法圆锥椭圆截交线

Three-dimensional stability analysis of passive failure on shallow tunnel face based on the nonlinear failure criterion
LI Dejian,ZHAO Lianheng,YANG Feng,CHENG Xiao.Three-dimensional stability analysis of passive failure on shallow tunnel face based on the nonlinear failure criterion[J].Chinese Journal of Rock Mechanics and Engineering,2016,35(4):743-752.
Authors:LI Dejian  ZHAO Lianheng  YANG Feng  CHENG Xiao
Affiliation:(School of Civil Engineering,Central South University,Changsha,Hunan 410075,China)
Abstract:The method of calculating the geometric parameters of the three-dimensional passive failure elliptical cone of shallow tunnel face was improved through introducing the expression for the elliptical locus of the intersection between the cone and plane. The upper bound expression of the passive failure pressure on three-dimensional shallow tunnel face and the optimal upper bound solution of passive failure pressure were obtained based on the upper bound limit analysis and nonlinear failure criterion. Reliability of this method was verified by comparing with other results. The effect of non-linear shear strength parameters on pressure and failure modes was investigated. Besides,the figures of failure modes were drawn. The passive failure pressure changes basically linearly with the ground overload ?s and soil density ?,but changes nonlinearly with the nonlinear parameters m,dimensionless parameter c0/?t and critical pressure ratio C/D. The failure modes were found to depend significantly on the nonlinear parameters m,dimensionless parameter c0/?t and critical pressure ratio C/D,but the ground overload ?s had smaller effect on failure modes.
Keywords:tunnelling engineering  tunnel face  passive failure  nonlinear failure criterion  upper bound limit analysis method  elliptical locus of the intersection between the cone and the plane
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