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Mechanism of the Anlesi landslide in the Three Gorges Reservoir, China

机译:中国三峡库区安乐寺滑坡机理

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Many gentle dip translational rock slides have taken place in the Three Gorges Reservoir, China. In order to study the mechanism of these translational rock slides, the authors use the Anlesi landslide as a typical case study to investigate in detail. Field investigations show that the slip zones of the Anlesi landslide were formed from a white mudstone in Jurassic red strata. X-ray diffraction and infrared ray analysis showed that the main mineral components of the slip zones are montmorillonite, illite, feldspar and quartz. Laboratory tests indicate that the slip zone soils are silty clay, of medium-swelling potential, the shear strength decreasing significantly as the slip zone attracts water and saturates. The main factors contributing to the Anlesi landslide are recent tectonic activity, incompetent beds, and intensive rainfall. Recent tectonic activity had caused shear failure along the incompetent beds, and joints within the sandstone. With the effect of intensive rainfall, water percolates to the incompetent beds along tectonic fissures, resulting in swelling of the soil material and high groundwater pressures within fissures in the strata. As a consequence, the Anlesi slope is prone to slide along these incompetent beds. Flac3D software was used to simulate the mechanism of the Anlesi landslide considering the Theological properties of soil and rock. The simulation results demonstrate that the stress, displacement and failure area changes with simulated creep time. The maximum displacement in the X direction reaches 7.59 m after 200-year simulated creep. Therefore, the mechanism of the Anlesi landslide can be illustrated considering the Theological properties of Jurassic red strata.
机译:中国三峡水库发生了许多平缓的平移岩石滑坡。为了研究这些平移岩石滑坡的机理,作者使用Anlesi滑坡作为典型案例研究进行了详细研究。野外调查表明,Anlesi滑坡的滑移带是由侏罗纪红色地层中的白色泥岩形成的。 X射线衍射和红外分析表明,滑移带的主要矿物成分为蒙脱石,伊利石,长石和石英。实验室测试表明,滑移带土壤是粉质粘土,具有中等膨胀潜力,随着滑移带吸水和饱和,剪切强度显着降低。造成Anlesi滑坡的主要因素是近期的构造活动,无能的床层和强降雨。最近的构造活动已导致沿无能力层和砂岩内部的节理发生剪切破坏。在强降雨的影响下,水沿着构造裂缝渗入到不称职的河床中,导致土壤物质膨胀和地层裂缝内的高地下水压力。结果,Anlesi斜坡容易沿着这些不称职的床层滑动。考虑到土壤和岩石的流变特性,使用Flac3D软件来模拟Anlesi滑坡的机理。仿真结果表明,应力,位移和破坏区域随模拟蠕变时间而变化。经过200年的模拟蠕变,X方向的最大位移达到7.59 m。因此,考虑到侏罗纪红色地层的神学特性,可以说明Anlesi滑坡的机理。

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