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富水软弱层联络通道冻结温度场研究 被引量:5
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作者 朱现磊 《矿业科学学报》 2020年第4期393-400,共8页
以某富水软弱地层地铁联络通道冻结工程为研究背景,采用室内三维模型试验、ANSYS有限元数值分析及解析求解相结合的方法,研究了联络通道冻结工程中的土体温度场演化规律。室内三维模型试验研究结果表明,冻结试验开始后12 h达到预设温度... 以某富水软弱地层地铁联络通道冻结工程为研究背景,采用室内三维模型试验、ANSYS有限元数值分析及解析求解相结合的方法,研究了联络通道冻结工程中的土体温度场演化规律。室内三维模型试验研究结果表明,冻结试验开始后12 h达到预设温度-25℃,19 h后土体冻结帷幕形成,可得现场的积极冻结时间为50 d,维护冻结时间为29 d;土体冻结过程中,温度变化大致分两个阶段,第一阶段土体温度呈线性快速下降至0℃,第二阶段土体相变放热后,温度继续下降,最低温度为-15.2℃^-16.8℃,整个过程土体降温速度呈现先快后慢态势;在冻土融化阶段,土体温度随时间逐渐升高至室温,整个融化过程所需时间为冻结时间的3~4倍。有限元数值分析结果表明,在联络通道开挖后,冻结管圈内冻结壁平均温度有显著升高,而冻结管圈外冻结壁温度受影响较小。推导得到了双管冻结温度场解析解。 展开更多
关键词 富水软弱层 人工冻结法 数值模拟 模型试验 温度场
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超深地连墙成槽富水软弱层局部失稳理论研究 被引量:16
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作者 刘杨 刘维 +2 位作者 史培新 赵宇 王秒 《岩土力学》 EI CAS CSCD 北大核心 2020年第S01期10-18,共9页
地下连续墙成槽施工穿越富水软弱地层容易诱发软弱地层局部失稳,为从理论上分析其局部失稳机制,构建了局部失稳受力模型。模型中考虑了上覆荷载、地层剪切强度和地下水渗流等影响因素,对理论模型进行了极限平衡分析,得到槽壁局部失稳的... 地下连续墙成槽施工穿越富水软弱地层容易诱发软弱地层局部失稳,为从理论上分析其局部失稳机制,构建了局部失稳受力模型。模型中考虑了上覆荷载、地层剪切强度和地下水渗流等影响因素,对理论模型进行了极限平衡分析,得到槽壁局部失稳的极限支护压力和最低泥浆液面高度。开展参数敏感性分析,研究地连墙尺寸、地层厚度、强度和渗透特性对富水软弱层稳定性的影响,结果表明极限支护压力主要受槽段长度、软弱层强度和覆土层厚度影响,软弱层中承压水渗流对支护压力影响较小。用理论模型对苏州某超深地连墙工程进行了案例分析,现场监测与研究结果吻合较好,表明理论模型能够较好应用于类似工程中,可以对可能发生的局部失稳进行有效预测。 展开更多
关键词 地连墙 成槽施工 富水软弱层 局部失稳 极限平衡分析
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Influence of confined water on the limit support pressure of tunnel face in weakly water-rich strata
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作者 LI Yun-fa WU Guo-jun +2 位作者 CHEN Wei-zhong YUAN Jing-qiang HUO Meng-zhe 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第8期2844-2859,共16页
In the process of shield tunneling through soft soil layers,the presence of confined water ahead poses a significant threat to the stability of the tunnel face.Therefore,it is crucial to consider the impact of confine... In the process of shield tunneling through soft soil layers,the presence of confined water ahead poses a significant threat to the stability of the tunnel face.Therefore,it is crucial to consider the impact of confined water on the limit support pressure of the tunnel face.This study employed the finite element method(FEM)to analyze the limit support pressure of shield tunnel face instability within a pressurized water-containing layer.Subsequently,a multiple linear regression approach was applied to derive a concise solution formula for the limit support pressure,incorporating various influencing factors.The analysis yields the following conclusions:1)The influence of confined water on the instability mode of the tunnel face in soft soil layers makes the displacement response of the strata not significant when the face is unstable;2)The limit support pressure increases approximately linearly with the pressure head,shield tunnel diameter,and tunnel burial depth.And inversely proportional to the thickness of the impermeable layer,soil cohesion and internal friction angle;3)Through an engineering case study analysis,the results align well with those obtained from traditional theoretical methods,thereby validating the rationality of the equations proposed in this paper.Furthermore,the proposed equations overcome the limitation of traditional theoretical approaches considering the influence of changes in impermeable layer thickness.It can accurately depict the dynamic variation in the required limit support pressure to maintain the stability of the tunnel face during shield tunneling,thus better reflecting engineering reality. 展开更多
关键词 weakly water-rich strata confined aquifer limit support pressure finite element method multiple linear regression
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