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A Preliminary Study of Joint Effect of Earthquake Disturbing and Rainfall On Yiliang Landslide

机译:伊恩滑坡地震干扰与降雨的联合效应初探

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Earthquakes and subsequent rainfall infiltration often easily trigger a landslide, such as the "10.4" Yiliang slope incident in Yunnan Province. In the present study, based on detailed on-site survey, indoor rainfall tests were designed to investigate the different hydraulic responses of initial and seismic slopes to rainfall. To further assess the joint effects of earthquake disturbance and subsequent rainfall on slope failure, the rainfall unsaturated seepage fields of the above two types of slope were simulated separately; then, based on the pore water pressures obtained in the above calculations, the safety factors of the slopes were calculated using a finite element method. The results showed that the seismic slopes are inclined to rainfall infiltration, which significantly increased the pore water pressure, and induced the rise of ground water. Moreover, the factor value of seismic slope safety suffering subsequent rainfall was shown to be smaller than the undisturbed one. Finally, a deeper potential failure zone and wider soil mass sliding range evidently illustrated the combined effect of earthquakes and rainfall on the triggering of slope failure.
机译:地震和随后的降雨渗透往往很容易引发滑坡,如“10.4”云南省的伊利康坡面。在本研究的基础上,根据详细的现场调查,室内降雨测试旨在调查初始和地震斜坡降雨的不同液压反应。为了进一步评估地震干扰的联合影响和随后的降雨对坡衰竭,分别模拟了上述两种坡度的降雨不饱和渗流场;然后,基于上述计算中获得的孔隙水压力,使用有限元法计算斜坡的安全因子。结果表明,地震斜坡倾向于降雨渗透,从而显着增加了孔隙水压力,并诱导了地下水的升高。此外,遭受后续降雨的地震斜坡安全性的因子值被认为小于未受干扰的降雨。最后,更深层次的潜在失效区和更宽的土壤质量滑动范围明显地说明了地震和降雨对斜坡故障触发的综合影响。

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