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概率极限状态设计法在坝基工程中的应用
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作者 张强勇 李术才 张云鹏 《人民黄河》 CAS 北大核心 2005年第6期60-62,共3页
为有效反映深层软弱结构面对坝基稳定的影响,针对坝基内部倾向上游的缓倾角结构面,建立了坝基深层抗滑稳定的单滑动面和双滑动面计算模型及相应的抗滑稳定极限状态设计表达式。将建立的模型和推导的理论公式应用于石板水电站重力坝坝基... 为有效反映深层软弱结构面对坝基稳定的影响,针对坝基内部倾向上游的缓倾角结构面,建立了坝基深层抗滑稳定的单滑动面和双滑动面计算模型及相应的抗滑稳定极限状态设计表达式。将建立的模型和推导的理论公式应用于石板水电站重力坝坝基深层抗滑稳定复核计算,结果表明大坝坝基深层抗滑稳定是安全的,这与对大坝多年运行监测资料的分析得到的重力坝是安全稳定的结论相一致。 展开更多
关键词 概率极限状态 深层抗滑稳定 倾向上游结构 滑动面计算模型 混凝土重力坝
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Seismic stability analysis of slopes with pre-existing slip surfaces 被引量:2
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作者 SU Li-jun SUN Chang-ning +1 位作者 YU Fang-wei ALI Sarfraz 《Journal of Mountain Science》 SCIE CSCD 2018年第6期1331-1341,共11页
In analyzing seismic stability of a slope with upper bound limit analysis method, the slip surface is often assumed as a log-spiral or plane slip surface. However, due to the presence of a weak layer and unfavorable g... In analyzing seismic stability of a slope with upper bound limit analysis method, the slip surface is often assumed as a log-spiral or plane slip surface. However, due to the presence of a weak layer and unfavorable geological structural surface or a bedrock interface with overlying soft strata, the preexisting slip surface of the slope may be irregular and composed of a series of planes rather than strictly logspiral or plane shape. A computational model is developed for analyzing the seismic stability of slopes with pre-existing slip surfaces. This model is based on the upper bound limit analysis method and can consider the effect of anchor bolts. The soil or rock is deemed to follow the Mohr-Coulomb yield criterion. The slope is divided into multiple block elements along the slip surface. According to the displacement compatibility and the associated flow rule, a kinematic velocity field of the slope can be obtained computationally. The proposed model allows not only calculation of the rate of external work owing to the combined effect of self-weight and seismic loading, but also that of the energy dissipation rate caused by the slip surface, interfaces of block elements and anchorage effect of the anchors. Considering a direct relationship between the rate of external work and the energy dissipation rate, the expressions of yield acceleration and permanent displacement of anchored slopes can be derived. Finally, the validity of this proposed model is illustrated by analysis on three typical slopes. The results showed that the proposed model is more easily formulated and does not need to solve complex equations or time consuming iterations compared with previous methods based on the conditions of force equilibrium. 展开更多
关键词 Slope stability Pre-existing slip surface Seismic loading Limit analysis Yield acceleration Permanent displacement
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Effective grouting area of jointed slope and stress deformation responses by numerical analysis with FLAC^(3D) 被引量:3
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作者 ZHU Zi-qiang LIU Qun-yi +1 位作者 ZENG Fan-he QING Du-gan 《Journal of Coal Science & Engineering(China)》 2009年第4期404-408,共5页
To study the grouting reinforcement mechanism in jointed rock slope, first, the theoretical deduction was done to calculate the critical length of slipping if the slope angle is larger than that of joint inclination; ... To study the grouting reinforcement mechanism in jointed rock slope, first, the theoretical deduction was done to calculate the critical length of slipping if the slope angle is larger than that of joint inclination; Second, the numerical calculation model was founded by FLAG^3D, so as to find the stress and deformation responses of rock mass in the state before and after grouting, the analysis results show that the range between the boundary of critical slipping block and the joint plane that passes the slope toe is the effective grouting area (EGA). After excavation, large deformation occurs along the joint plane. After grouting, the displacements of rock particles become uniform and continuous, and large deformations along the joint plane are controlled; the dynamic displacement can re- flect the deformation response of slope during excavation in the state before and after grouting, as well as the shear location of potential slip plane. After grouting, the dynamic displacement of each monitoring point reaches the peak value with very few time steps, which indicate that the parameters of the joint plane, such as strength and stiffness, are improved; the stress field becomes uniform. Tensile area reduces gradually; whole stability of the slope and its ability to resist tensile and shear stress are improved greatly. 展开更多
关键词 SLOPE STRESS DEFORMATION cranny FLAC^3D
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