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Stability assessment for the landslide undergoing the effects of water level fluctuation in the Three Gorges Reservoir area, China

机译:三峡库区受水位波动影响的滑坡稳定性评价

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The Majiagou landslide, as a cause for study, is located on the left side of the Zhaxihe River, a tributary of the Yangtze River. After the water level of the Three Gorges Reservoir rose from 95m to 135m in June 2003, the Majiagou landslide occurred including a 20m- long, 3~5cm wide, (locally 10cmwide) fissure at its back that occurred in a time-frame of 3 months. The implication is, that the reservoir impounding reactivated the landslide. The slide mass of the Majiagou landslide is composed of a thin layer of silty clay on the top with low permeability and a thick layer of angular pebbles as the main portion beneath the silt clay which has high permeability. The rate of water level fluctuation is between 0.6 m/d and 4.0m/d with regard to the altitude between 145 m and 175 m in the reservoir during its normal operational state. Under these conditions, the FEM method was applied to simulate the groundwater changes in the slide mass, coinciding with the reservoir water level fluctuation. The results suggest that the groundwater level almost changes with the reservoir water level simultaneously within the slide mass, which means that the groundwater gradient is very gentle. Therefore, the effect of the reservoir water level fluctuation on the landslide stability is mainly by the action of buoyant force. Without considering dam failure, the seepage force is so little as to be negligible. The stability of the landslide in cases of different water levels is then calculated using the Morgenstern-Price method, and the results show that the factors of safety decrease with the water level rise. As the water level increases to 165m, the factors of safety are at the minimum value, increasing with the water level rise. The minimum value reflects that the landslide is in a critical state, so stabilizing design was applied using stabilizing piles as well as a water drainage system. The project was completed in early 2006, and the water level has risen to 156m in Oct. 2006. Monitoring data illustrated that there is no further deformation of the landslide and the stabilizing piles, so the stabilizing work is effective.
机译:作为研究的理由,马家沟滑坡位于长江支流闸西河的左侧。三峡水库的水位在2003年6月从95m上升到135m后,发生了马家沟滑坡,包括一个20m长,3〜5cm宽(局部10cm宽)的裂缝,发生时间为3年。个月。这意味着水库蓄水使滑坡重新活化。马家沟滑坡的滑移体由顶部低渗透性的粉质粘土薄层和高渗透性的粉质粘土下面的主要部分的厚厚的卵石层组成。相对于正常运行状态下水库中145 m至175 m之间的高度,水位波动率在0.6 m / d至4.0m / d之间。在这种条件下,采用有限元方法模拟了滑坡体中地下水的变化,并与水库水位的波动相吻合。结果表明,在滑坡体中,地下水位几乎随储层水位同时变化,这意味着地下水梯度非常平缓。因此,水库水位波动对滑坡稳定性的影响主要是通过浮力的作用。不考虑大坝的破坏,渗流力很小,可以忽略不计。然后采用Morgenstern-Price方法计算了不同水位情况下滑坡的稳定性,结果表明,安全系数随水位的升高而降低。当水位增加到165m时,安全系数处于最小值,并随水位的升高而增加。最小值反映出滑坡处于临界状态,因此使用了稳定桩和排水系统来进行稳定设计。该项目于2006年初完成,2006年10月水位上升至156m。监测数据表明,滑坡和稳定桩没有进一步变形,因此稳定工作是有效的。

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