为了研究抚顺西露天矿南帮边坡的破坏机理,抑制边坡的滑移变形,应用微震监测技术和卫星监测技术,研究了南帮边坡的滑移破坏轮廓,基于RFPA(rock failure process analysis)强度折减法原理,研究了开采到最终境界时的边坡破坏机理,提出了...为了研究抚顺西露天矿南帮边坡的破坏机理,抑制边坡的滑移变形,应用微震监测技术和卫星监测技术,研究了南帮边坡的滑移破坏轮廓,基于RFPA(rock failure process analysis)强度折减法原理,研究了开采到最终境界时的边坡破坏机理,提出了两阶段内排压脚的防治措施,并分析了内排压脚对滑坡变形的抑制效果。研究结果表明:1)边坡破坏机理为,破坏最先发生在边坡上部,在边坡中部沿着弱层和破碎带运动,到边坡下部不整合面处受到抑制,最后在边坡底部沿中间弱层切出坑底,形成滑坡轮廓;2)两阶段内排压脚方案能明显抑制弱层的错动,当内排到-262m水平时,可部分抑制底部弱层处滑移,底鼓现象消失;当内排到-212m水平时,可完全抑制住底部弱层的滑动,此时边坡安全系数为1.324,满足安全要求。展开更多
Affected by typhoons over years, Fujian Province in Southeast China has developed a large number of shallow landslides, causing a long-term concern for the local government. The study on shallow landslide is not only ...Affected by typhoons over years, Fujian Province in Southeast China has developed a large number of shallow landslides, causing a long-term concern for the local government. The study on shallow landslide is not only helpful to the local government in disaster prevention, but also the theoretical basis of regional early warning technology. To determine the whole-process characteristics and failure mechanisms of flow-slide failure of granite residual soil slopes, we conducted a detailed hazard investigation in Minqing County, Fujian Province, which was impacted by Typhoon Lupit-induced heavy rainfall in August 2021. Based on the investigation and preliminary analysis results, we conducted indoor artificial rainfall physical model tests and obtained the whole-process characteristics of flow-slide failure of granite residual soil landslides. Under the action of heavy rainfall, a granite residual soil slope experiences initial deformation at the slope toe and exhibits development characteristics of continuous traction deformation toward the middle and upper parts of the slope. The critical volumetric water content during slope failure is approximately 53%. Granite residual soil is in a state of high volumetric water content under heavy rainfall conditions, and the shear strength decreases, resulting in a decrease in stability and finally failure occurrence. The new free face generated after failure constitutes an adverse condition for continued traction deformation and failure. As the soil permeability(cm/h) is less than the rainfall intensity(mm/h), and it is difficult for rainwater to continuously infiltrate in short-term rainfall, the influence depth of heavy rainfall is limited. The load of loose deposits at the slope foot also limits the development of deep deformation and failure. With the continuous effect of heavy rainfall, the surface runoff increases gradually, and the influence mode changes from instability failure caused by rainfall infiltration to erosion and scouring of surface runoff on slope surface. 展开更多
文摘为了研究抚顺西露天矿南帮边坡的破坏机理,抑制边坡的滑移变形,应用微震监测技术和卫星监测技术,研究了南帮边坡的滑移破坏轮廓,基于RFPA(rock failure process analysis)强度折减法原理,研究了开采到最终境界时的边坡破坏机理,提出了两阶段内排压脚的防治措施,并分析了内排压脚对滑坡变形的抑制效果。研究结果表明:1)边坡破坏机理为,破坏最先发生在边坡上部,在边坡中部沿着弱层和破碎带运动,到边坡下部不整合面处受到抑制,最后在边坡底部沿中间弱层切出坑底,形成滑坡轮廓;2)两阶段内排压脚方案能明显抑制弱层的错动,当内排到-262m水平时,可部分抑制底部弱层处滑移,底鼓现象消失;当内排到-212m水平时,可完全抑制住底部弱层的滑动,此时边坡安全系数为1.324,满足安全要求。
基金funded by the National Natural Science Foundation of China(Grant Nos.U2005205,41977252)National Key R&D Program of China(2018YFC1505503)+1 种基金Open Fund of Key Laboratory of Geohazard Prevention of Hilly Mountains,Ministry of Natural Resources(Fujian Key Laboratory of Geohazard Prevention)(FJKLGH2022K001)the State Key Laboratory of Geohazard Prevention and Geoenvironment Protection Independent Research Project(Grant No.SKLGP2020Z001)。
文摘Affected by typhoons over years, Fujian Province in Southeast China has developed a large number of shallow landslides, causing a long-term concern for the local government. The study on shallow landslide is not only helpful to the local government in disaster prevention, but also the theoretical basis of regional early warning technology. To determine the whole-process characteristics and failure mechanisms of flow-slide failure of granite residual soil slopes, we conducted a detailed hazard investigation in Minqing County, Fujian Province, which was impacted by Typhoon Lupit-induced heavy rainfall in August 2021. Based on the investigation and preliminary analysis results, we conducted indoor artificial rainfall physical model tests and obtained the whole-process characteristics of flow-slide failure of granite residual soil landslides. Under the action of heavy rainfall, a granite residual soil slope experiences initial deformation at the slope toe and exhibits development characteristics of continuous traction deformation toward the middle and upper parts of the slope. The critical volumetric water content during slope failure is approximately 53%. Granite residual soil is in a state of high volumetric water content under heavy rainfall conditions, and the shear strength decreases, resulting in a decrease in stability and finally failure occurrence. The new free face generated after failure constitutes an adverse condition for continued traction deformation and failure. As the soil permeability(cm/h) is less than the rainfall intensity(mm/h), and it is difficult for rainwater to continuously infiltrate in short-term rainfall, the influence depth of heavy rainfall is limited. The load of loose deposits at the slope foot also limits the development of deep deformation and failure. With the continuous effect of heavy rainfall, the surface runoff increases gradually, and the influence mode changes from instability failure caused by rainfall infiltration to erosion and scouring of surface runoff on slope surface.