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Mechanism of the slow-moving landslides in Jurassic red-strata in the Three Gorges Reservoir, China

机译:中国三峡水库侏罗系红地层慢速滑坡机理

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摘要

Landslides in Jurassic red-strata make up a great part of geohazards in the Three Gorges Reservoir (TGR) in China. Most of them begin to move slowly with the accumulated displacement increasing stepwise, which corresponds to seasonal rainfall and 30 m of reservoir water level fluctuation (145 m to 175 m on elevation). We analyzed the movement of 21 slow moving landslides in the Jurassic red-strata in TGR, and found that all these landslides involved two differing processes; one is the sliding process with different shear speeds of soils within the sliding zone (landslide activity), and the other one is in steady state with different durations (dormant state). This means that the soil within the sliding surface may experience shearing at different shear rates and recovery in shear strength during the dormant period. To clarify the mechanism of this kind of movement, we took soil samples from the sliding surface of Xiangshanlu landslide, which occurred on August 30, 2008 in the Jurassic red-strata in TGR, and examined the shear rate dependency and recovery of shear resistance by means of ring shear tests. The results of tests at different shear rates show that the shear strength is positively dependent on the shear rate, and can be recovered within a short consolidation duration after the shearing ceased. By increasing the pore-water pressure (PWP) from the upper layer of the sample, we also examined the initiation of shearing which can simulate the restart of landsliding due to the fluctuation of groundwater level caused by rainfall or changes in reservoir water level. The monitored PWP near the sliding surface revealed that there was a delayed response of PWP near the sliding surface to the applied one. This kind of delayed response in pore-water pressure may provide help for the prediction of landslide occurrence due to rainfall or fluctuation of reservoir water level.
机译:侏罗纪红地层的滑坡构成了中国三峡水库(TGR)地质灾害的很大一部分。随着累积位移逐步增加,它们中的大多数开始缓慢移动,这对应于季节性降雨和30 m的水库水位波动(海拔145 m至175 m)。我们分析了TGR侏罗纪红层中21个缓慢移动的滑坡的运动,发现所有这些滑坡都涉及两个不同的过程。一个是在滑动区域内土壤剪切速度不同的滑动过程(滑坡活动),另一个是处于不同持续时间的稳定状态(休眠状态)。这意味着在休眠期间,滑动表面内的土壤可能会经历不同剪切速率的剪切和剪切强度的恢复。为了弄清这种运动的机理,我们从2008年8月30日发生在TGR侏罗纪红层的香山路滑坡的滑动面取了土样,并通过考察了剪切速率的依赖性和抗剪力的恢复。环剪试验的手段。在不同剪切速率下的测试结果表明,剪切强度与剪切速率呈正相关,并且可以在剪切停止后的短固结时间内恢复。通过增加样品上层的孔隙水压力(PWP),我们还研究了剪切的开始,该剪切可以模拟由于降雨或储层水位变化引起的地下水位波动而引起的滑坡重新开始。在滑动表面附近监测到的PWP表明,滑动表面附近PWP对所施加的PWP有延迟的响应。孔隙水压力中的这种延迟响应可能有助于预测由于降雨或储层水位波动而引起的滑坡发生。

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