Case analysis of landslide hazard risk identification induced by coupling effect of rainfall and reservoir water level change

Q. Song, X. L. Li, S. Ren, X. Cheng
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Abstract

Engineering practice and research show that rainfall, earthquake, reservoir water level change and man-made engineering activities have an important impact on the stability of landslide. For the Three Gorges Reservoir Area in China, rainfall, especially heavy rainfall or continuous rainfall and the change of reservoir water level are often the most common and active factors inducing landslides. On the basis of discussing the landslide mechanism induced by rainfall and reservoir water level change, combined with the typical landslide hazard in the Three Gorges Reservoir area-Longshuigou landslide in Fengjie County of Chongqing city in China, this paper analyzes the landslide characteristics by means of detailed field survey and investigation, UAV aerial photography and comparative interpretation of remote sensing data. The analysis results show that (1) Longshuigou landslide is affected by the coupling effect of rainfall and reservoir water level change; (2) the landslide may collapse locally and the stability of landslide is relatively poor; (3) the prevention and control level of landslide disaster is grade III and its risk early warning level is blue.
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降雨与水库水位变化耦合效应下滑坡灾害风险识别实例分析
工程实践和研究表明,降雨、地震、水库水位变化和人为工程活动对滑坡的稳定性有重要影响。对于中国三峡库区来说,降雨,特别是强降雨或连续降雨以及水库水位的变化往往是诱发滑坡最常见和最活跃的因素。本文在探讨降雨和水库水位变化诱发滑坡机理的基础上,结合三峡库区典型滑坡灾害——重庆市奉节县龙水沟滑坡,通过实地详实调查、无人机航拍和遥感数据对比解译等手段,对滑坡特征进行了分析。分析结果表明:(1)龙水沟滑坡受降雨与水库水位变化的耦合效应影响;(2)滑坡可能发生局部垮塌,滑坡稳定性较差;(3)滑坡灾害防控等级为三级,风险预警等级为蓝色。
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