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基于CDEM的砂卵石地层盾构开挖面稳定性分析 被引量:3
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作者 薛亚东 张森 +1 位作者 李兴 葛嘉诚 《西南交通大学学报》 EI CSCD 北大核心 2019年第3期499-506,586,共9页
为探究砂卵石地层中盾构开挖工作面失稳现象的机理,采用 CDEM (continuum-based discrete elementmethod)可变形块体离散元方法,建立准连续介质模型,对砂卵石土三轴压缩试验开展数值模拟,以分析其细观力学特性;基于“颗粒流动”、“土... 为探究砂卵石地层中盾构开挖工作面失稳现象的机理,采用 CDEM (continuum-based discrete elementmethod)可变形块体离散元方法,建立准连续介质模型,对砂卵石土三轴压缩试验开展数值模拟,以分析其细观力学特性;基于“颗粒流动”、“土拱效应”、“超挖出土”等特点,通过平面三角块体离散元建立模拟砂卵石地层盾构开挖面超挖出土的二维动态离散元模型,研究土拱效应、空洞区发展等开挖面失稳的渐进演化机制.研究结果表明:砂卵石土三轴压缩试验宏观应力应变曲线可分为线弹性阶段、弹塑性阶段、理想塑性阶段;卵石作为粗粒相颗粒存在骨架增强作用,砂卵石接触界面对宏观强度具有弱化作用;通过以土拱效应为标定准则的 HopperFlow 标定试验可有效得到不同尺度平面三角形离散单元摩擦角的转换关系;土拱效应显著存在于开挖面前方并随着开挖面超挖出土渐进发展,达到极限状态后逐渐破坏消散;空洞区始于螺旋输送机底部,随超挖出土逐步向上方和前方扩展,最终在击穿承载土拱后到达地表,形成“水滴状”空洞区;从不同角度提出了三类超挖量的控制标准. 展开更多
关键词 隧道工程 数值模拟 砂卵石地层 盾构开挖面稳定性 土拱效应
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Tunnel face stability and ground settlement in pressurized shield tunnelling 被引量:4
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作者 苏艺 汪国锋 周庆宏 《Journal of Central South University》 SCIE EI CAS 2014年第4期1600-1606,共7页
An analysis of the stability of large-diameter circular tunnels and ground settlement during tunnelling by a pressurized shield was presented. An innovative three-dimensional translational multi-block failure mechanis... An analysis of the stability of large-diameter circular tunnels and ground settlement during tunnelling by a pressurized shield was presented. An innovative three-dimensional translational multi-block failure mechanism was proposed to determine the face support pressure of large-shield tunnelling. Compared with the currently available mechanisms, the proposed mechanism has two unique features:(1) the supporting pressure applied to the tunnel face is assumed to have a non-uniform rather than uniform distribution, and(2) the method takes into account the entire circular excavation face instead of merely an inscribed ellipse. Based on the discrete element method, a numerical simulation of the Shanghai Yangtze River Tunnel was carried out using the Particle Flow Code in two dimensions. The immediate ground movement during excavation, as well as the behaviour of the excavation face, the shield movement, and the excavated area, was considered before modelling the excavation process. 展开更多
关键词 settlement large-diameter shield tunnel three-dimensional failure mechanism
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