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Research on the impact of the water-level-fluctuation zone on landslide stability in the Three Gorges Reservoir Area

机译:水位波动区对三峡库区山体积稳定性的影响研究

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Taking the Lijiapo landslide in Three Gorges Area as an example, the study on the impact of seepage field changes caused by water level fluctuation on reservoir landslide stability was carried out. In order to find out the variation in slope stability when the reservoir water level changes at different rate, the stability calculation model was established adopting the Seep module and Slope module of Geoscience software GeoStudio, and calibrated with a long sequence of real-time monitoring data, based on the landslide survey data and test data. The results show that the reservoir landslide stability affected by the seepage field changes with changing reservoir level is controlled by a variety of factors, including the hydrodynamic pressure, hydrostatic pressure, uplift force, physical and mechanical properties (с, Φ value change). When the water level fluctuates at a high rate, the impact of the seepage field changes on the stability is mainly affected by the pore water pressure before the stability reaches the extremum, while after the extremum, with the further infiltration or drainage of reservoir water, it is mainly affected by the change of physical and mechanical properties. When the water level fluctuates at a lower rate, the pore water pressure, uplift force and physical and mechanical properties are the dominant factors.
机译:以三峡地区以三峡地区为例,实施了对水平岩石稳定性水平波动引起的渗流场变化影响的研究。为了发现当储层稳定性的斜坡稳定性以不同的速率变化时,建立了采用地球科技软件Geostudio的渗透模块和斜坡模块的稳定性计算模型,并以长期的实时监测数据校准,基于滑坡测量数据和测试数据。结果表明,受渗流场影响的储层滑坡稳定性随着储层水平的变化而受到各种因素的控制,包括流体动力压力,静压压力,隆起力,物理和机械性能(С,Φ值变化)。当水位以高速率波动时,渗流场的影响对稳定性的影响主要受到孔隙水压力的影响,在稳定性达到极值之前,在极值之后,进一步渗透或储层水的排出,它主要受到物理和机械性能变化的影响。当水位以较低的速率波动时,孔隙水压力,隆起力和物理和机械性能是显性因素。

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