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高土石围堰施工-运行过程边坡稳定性分析
引用本文:罗立哲,胡志根,刘全,倪锦初,李勤军.高土石围堰施工-运行过程边坡稳定性分析[J].武汉大学学报(工学版),2013,46(1):84-88.
作者姓名:罗立哲  胡志根  刘全  倪锦初  李勤军
作者单位:1. 武汉大学水资源与水电工程科学国家重点实验室,湖北武汉,430072
2. 长江勘测规划设计研究有限公司,湖北武汉,430010
基金项目:国家自然科学基金项目(编号:10902078,51079115)
摘    要:高土石围堰边坡稳定性与堰体材料的力学性质密切相关.在围堰施工及运行过程中,随着结构应力和渗流状态的变化,堰体材料力学参数也发生持续性变化.基于围堰施工过程中堰体应力及渗流状态变化规律分析和土石材料力学非线性理论,建立考虑施工过程的土石围堰边坡稳定分析模型;在此基础上,进行高土石围堰施工-运行过程边坡稳定特性分析,结果表明堰体边坡稳定的最不利工况出现在基坑开挖后的堰前水位下降期,最危险滑动面位置随着水位下降速率的增加由背水面转向迎水面;当水位下降速率一定时,堰坡稳定安全系数呈先减小后增加趋势,最小值及其出现时间与水位下降速率相关.

关 键 词:高土石围堰  边坡稳定  施工-运行过程  材料非线性

Slope stability analysis of high earth-rock cofferdam considering construction and working processing
LUO Lizhe,HU Zhigen,LIU Quan,NI Jinchu,LI Qinjun.Slope stability analysis of high earth-rock cofferdam considering construction and working processing[J].Engineering Journal of Wuhan University,2013,46(1):84-88.
Authors:LUO Lizhe  HU Zhigen  LIU Quan  NI Jinchu  LI Qinjun
Affiliation:1.The State Key Laboratory of Water Resources and Hydropower Engineering Science, Wuhan University,Wuhan 430072,China; 2.Changjiang Institute of Survey,Planning,Design and Research,Wuhan 430010,China)
Abstract:Slope stability of high rock-fill cofferdam is closely associated with mechanical parameters of earth and rock;and the mechanical parameters vary with the change of stress and transfusion state of cofferdam during its construction and working process.The slope stability analysis model of high earth-rock cofferdam considering construction process was established based on material nonlinearity theory and the analysis of stress and seepage during cofferdam construction and working process.The slope stability analysis of a high earth-rock cofferdam with this model indicated that the most dangerous condition appeared in the period of upstream water level falling after foundation pit excavation finished.With the increase of water level falling speed,the dangerous sliding surface shifted from downstream slope to upstream slope.When the water level fell with determinate speed,the slope safety factor appeared decreased firstly and increased finally,and the minimum slope safety factor and the critical time was related with the water level falling speed.
Keywords:earth-rock cofferdam  slope stability  construction and working process  material nonlinearity
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