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GIS-based remote sensing analysis of the spatial-temporal evolution of landslides in a hydropower reservoir in southwest China

机译:基于GIS遥感分析西南水利储层滑坡空间演变的遥感分析

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The evolution of reservoir landslides upstream of river buildings is a key issue because landslides continue to cause damage to the ecological environment, especially the safety of dams and the operation of reservoirs. Based on geographic information system (GIS), four high-resolution remote sensing images captured at a hydropower reservoir in southwest China during four different periods are used to interpret landslides. Landslide maps coupled with lithological setting, water level change history and some other factors are used to illustrate the spatial-temporal evolution of landslides in the upstream reservoir of river buildings. The results from this analysis indicate that the landslides are more likely to occur in Quaternary deposits, fractured rock masses and water softened rock masses, whose engineering properties are quite sensitive to water. Three main types of landslides are observed in the reservoir, include gully landslide, bank collapse and deep-seated landslide, among which bank collapse is the dominate type. Fluctuation of water level, together with the human activities and lithological setting, affect the deformation and failure process of the landslides. The deep-seated landslides in the reservoir were observed to experience a relative long period of large deformation until the occurrence of a disaster.
机译:河流建筑上游水库山体滑坡的演变是一个关键问题,因为山体滑坡继续造成生态环境的损害,尤其是水坝的安全和水库的运作。基于地理信息系统(GIS),四个不同时期在中国西南部的水电站捕获的四个高分辨率遥感图像用于解释滑坡。与岩性环境相结合的滑坡地图,水位变化历史和其他一些因素用于说明河流建筑上游水库山体滑坡的空间演变。该分析的结果表明,山体滑坡更有可能发生在第四纪沉积物中,裂缝岩体和水软化岩体,其工程性质对水非常敏感。在水库中观察到三种主要类型的山体滑坡,包括沟壑滑坡,银行崩溃和深层滑坡,其中堤岸崩溃是主导类型。水位波动与人类活动和岩性环境一起影响山体滑坡的变形和失效过程。观察到储层中的深层山体滑坡,在发生灾难的发生之前经历了相对长的变形。

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