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Slope deformation, reservoir variation and meteorological data at the Khoko landslide, Enguri hydroelectric basin (Georgia), during 2016–2019

机译:Khoko Landslide,Enguri水电站(格鲁吉亚)坡地变形,水库变异和气象数据,2016 - 2019年

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The Greater Caucasus mountain belt is characterized by deep valleys, steep slopes and frequent seismic activity, the combination of which results in major landslide hazard. Along the eastern side of the Enguri water reservoir lies the active Khoko landslide, whose head scarp zone affects the important Jvari–Khaishi–Mestia road, one of the few connections with the interior of the Greater Caucasus. Here, we present a database of measurement time series taken over a period of 4?years (2016–2019) that enables us to compare slope deformation with meteorological factors and human-induced perturbations owing to variations in the water level of the reservoir. The monitoring system we used is composed of two digital extensometers, placed within two artificial trenches excavated across the landslide head scarp. The stations are also equipped with internal and near-ground surface thermometers. The dataset is integrated by daily measurements of rainfall and lake level. The monitoring system – the first installed in Georgia – was set up in the framework of a NATO-funded project, aimed at assessing different types of geohazards affecting the Enguri artificial reservoir and the related hydroelectrical plant. Our results indicate that the Khoko landslide displacements appear to be mainly controlled by variations in hydraulic load, in turn induced by lake level oscillations. Rainfall variations might also have contributed, though this is not always evident for all the studied period. The full databases are freely available online at the following DOI: https://doi.org/10.20366/unimib/unidata/SI384-2.0 (Tibaldi et al., 2020).
机译:大高加索山带的特点是深谷,陡坡和频繁的地震活动的组合,导致重大滑坡灾害。沿着Enguri水库东侧位于活跃Khoko滑坡,他的头崖区影响的重要Jvari-Khaishi-Mestia路,与大高加索内部的几个连接中的一个。这里,我们提出的接管为期4?年(2016至2019年)测量的时间序列数据库,使我们能够斜坡变形比较气象因子并由于在贮存器中的水位变化人类引起扰动。我们使用的监控系统由两个数字引伸计,横放在滑坡头崖出土的两个人工沟槽内的。站也配备了内部和近地表面温度计。该数据集是由降雨和湖泊水位的每日测量集成。监控系统 - 在第一次安装在格鲁吉亚 - 在北约资助的项目,目的是评估不同类型的影响Enguri人工水库和相关的水电设备地质灾害的框架内成立。我们的结果表明,该Khoko滑坡位移出现在液压负载的变化来控制主要,又由湖平面振荡感应。降雨的变化也可能促成,虽然这并不总是所研究期间对所有可见一斑。完整的数据库是免费在线提供以下DOI:https://doi.org/10.20366/unimib/unidata/SI384-2.0(Tibaldi等,2020)。

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