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Displacement patterns of a landslide affected by human activities: insights from ground-based InSAR monitoring

机译:受人类活动影响的滑坡的位移模式:基于地面InSAR监测的见解

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摘要

Landslides interacting with large infrastructures represent a major problem for the economy, society as a whole, and the safety of workers. Continuous monitoring for 23 months using an integrated platform with a ground-based SAR interferometer (GB-InSAR), a weather station, and an automatic camera gave us the opportunity to analyze the response of an unstable slope to the different phases of work. The deformational behavior of both the natural slope and the man-made structures was recorded and interpreted in relation to the working stages and the rainfall conditions during the whole monitoring period. A typical pattern of displacement was identified for shallow landslides, debris produced by the excavation and gabions, metallic walls, and anchored bulkheads. Furthermore, insights into the dynamics and behavior of the slope and the man-made structures that interact with the landslide were obtained. Extreme rainfall is the main trigger of shallow landslides and gabion deformations, while anchored bulkheads are less influenced by rainfalls. Movement of debris that is produced by excavations and temporary metallic barrier deformation are closely related to each other. The herein proposed monitoring platform is very efficient in monitoring unstable slopes that are affected by human activities. Moreover, the recorded patterns of displacement in the slope and the man-made structures can be used as reference data for similar studies and engineering designs.
机译:与大型基础设施相互作用的滑坡是经济,整个社会以及工人安全的主要问题。使用带有地面SAR干涉仪(GB-InSAR),气象站和自动摄像头的集成平台,连续23个月的监测使我们有机会分析不稳定斜坡对工作不同阶段的响应。在整个监测期内,记录并解释了天然边坡和人造结构的变形行为,它们与工作阶段和降雨条件有关。对于浅层滑坡,开挖和石笼产生的碎屑,金属墙和锚定的舱壁,确定了典型的位移模式。此外,还获得了对边坡的动力学和行为以及与滑坡相互作用的人造结构的见解。极端降雨是浅层滑坡和石笼网变形的主要诱因,而锚定舱壁则不受降雨的影响。由挖掘产生的碎屑运动和金属屏障的临时变形彼此密切相关。本文提出的监测平台在监测受人类活动影响的不稳定斜坡方面非常有效。此外,在坡度和人造结构中记录的位移模式可以用作类似研究和工程设计的参考数据。

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