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首页> 外文期刊>Bulletin of engineering geology and the environment >Research on the creep mechanism of Huangniba landslide in the Three Gorges Reservoir Area of China considering the seepage-stress coupling effect
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Research on the creep mechanism of Huangniba landslide in the Three Gorges Reservoir Area of China considering the seepage-stress coupling effect

机译:考虑到渗流耦合效应,中国三峡库区黄尼巴滑坡蠕变机制研究

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The impoundment of China's Three Gorges Reservoir has led to the revival of many old landslides along the bank, and the annual fluctuation in water level of 30 m is likely to affect the creep deformation of these landslides. Through a field investigation of Huangniba landslide in the Three Gorges Reservoir Area, the local deformation signs and field monitoring data were analyzed. It was preliminarily considered that this landslide was currently at the creep stage and the creep rate was affected by the reservoir level variation. In order to carry out further research on the effect of reservoir level variation on the landslide movement, the finite element method was used to establish the seepage-stress coupling model of Huangniba landslide based on the seepage-stress coupling theory and taking into account the creep behavior of landslide material. The model was used to simulate the variation characteristics of the seepage field, stress field, and displacement field in the landslide during 6 years of cycles of reservoir level variation. Based on the numerical simulation results and field monitoring data, the deformation mechanism of the landslide was discussed. Finally, the sensitivity of the parameters in the creep model to the simulation results was discussed. The results show that creep deformation is the main deformation mechanism of Huangniba landslide, and it is obviously affected by the drawdown of the reservoir water level. During drawdown of the reservoir level, the pore water pressure inside the landslide decreases, resulting in an increase in effective creep stress and creep strain rate, thus accelerating creep deformation. The results of this study will provide a reference for the deformation mechanism of such creeping landslides subjecting to reservoir water level fluctuation.
机译:中国三峡库区的蓄水导致了沿岸许多旧滑坡的复兴,30米的水位的年波动可能会影响这些山体滑坡的蠕变变形。通过对三峡库区的黄镇滑坡的实地调查,分析了局部变形迹象和现场监测数据。初步认为,这种滑坡目前处于蠕变阶段,蠕变率受水库级别变化的影响。为了进一步研究储层水平变化对滑坡运动的影响,基于渗流应力耦合理论和考虑蠕变建立黄尼巴滑坡的渗流应力耦合模型。滑坡材料的行为。该模型用于在储层水平变化的6年循环期间模拟滑坡中渗流场,应力场和位移场的变化特性。基于数值模拟结果和现场监测数据,讨论了滑坡的变形机制。最后,讨论了蠕变模型中参数对模拟结果的敏感性。结果表明,蠕变变形是黄镇滑坡的主要变形机制,显然受水库水位缩减的影响。在储层水平的缩小期间,滑坡内的孔隙水压力降低,导致有效蠕变应力和蠕变应变速率的增加,从而加速蠕变变形。本研究的结果将为这种爬行滑坡经受水平水位波动的变形机制提供参考。

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