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不同降雨条件下非饱和土滑坡三维渗流变形及稳定性数值模拟
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作者 高小霞 查文华 +2 位作者 齐新炬 许涛 纪超 《科学技术与工程》 北大核心 2025年第20期8445-8454,共10页
降雨是导致滑坡稳定性的主要因素之一,为探究不同降雨条件下非饱和土滑坡渗流变形及稳定性规律,基于饱和-非饱和渗流及强度折减法相关理论,以赣东某牵引式滑坡为研究对象,在勘查和室内试验的基础上,确定了滑坡隐患体岩土参数,用AutoCAD... 降雨是导致滑坡稳定性的主要因素之一,为探究不同降雨条件下非饱和土滑坡渗流变形及稳定性规律,基于饱和-非饱和渗流及强度折减法相关理论,以赣东某牵引式滑坡为研究对象,在勘查和室内试验的基础上,确定了滑坡隐患体岩土参数,用AutoCAD软件最大程度地还原了郑坊镇西山村童山组滑坡真实地形与地质条件,建立滑坡体渗流-变形耦合三维数学模型,并通过ABAQUS有限元软件,模拟不同降雨条件下(不同降雨强度、历时和降雨停雨后)非饱和土滑坡渗流变形及稳定性动态变化过程。结果表明:坡体表层孔隙水压力随降雨强度和历时的增大而逐渐升高,渗流速度逐渐增大,饱和区逐渐向非饱和区转化,位移变形表现为逐渐增大;降雨停雨后的滑坡隐患体渗流出现滞后现象,均匀性降雨后位移变形为先增大后减小,间断型降雨在短期停雨缓冲期下位移呈现出一定的周期性。对滑坡稳定性,不同降雨强度和历时下坡体强度折减稳定性系数的变化趋势相同,但同一降雨强度下的稳定性系数变化不同,总体趋势是随历时的增加而逐渐减小;降雨停雨后均匀型降雨坡体强度折减稳定性系数变化趋势是先下降后上升,间断型降雨坡体的稳定性则呈现出一定的周期性。 展开更多
关键词 不同降雨条件 非饱和土滑坡 渗流-变形耦合 强度折减稳定性系数 数值模拟分析
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Upper bound analysis of slope stability with nonlinear failure criterion based on strength reduction technique 被引量:25
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作者 赵炼恒 李亮 +2 位作者 杨峰 罗强 刘项 《Journal of Central South University》 SCIE EI CAS 2010年第4期836-844,共9页
Based on the upper bound limit analysis theorem and the shear strength reduction technique, the equation for expressing critical limit-equilibrium state was employed to define the safety factor of a given slope and it... Based on the upper bound limit analysis theorem and the shear strength reduction technique, the equation for expressing critical limit-equilibrium state was employed to define the safety factor of a given slope and its corresponding critical failure mechanism by means of the kinematical approach of limit analysis theory. The nonlinear shear strength parameters were treated as variable parameters and a kinematically admissible failure mechanism was considered for calculation schemes. The iterative optimization method was adopted to obtain the safety factors. Case study and comparative analysis show that solutions presented here agree with available predictions when nonlinear criterion reduces to linear criterion, and the validity of present method could be illuminated. From the numerical results, it can also be seen that nonlinear parameter rn, slope foot gradient ,β, height of slope H, slope top gradient a and soil bulk density γ have significant effects on the safety factor of the slope. 展开更多
关键词 nonlinear failure criterion strength reduction method upper-bound theorem of limit analysis slope stability analysis factor of safety
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