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Deformation Monitoring of Earth Fissure Hazards Using Terrestrial Laser Scanning

机译:地球裂隙危害使用陆地激光扫描的变形监测

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摘要

Deformation monitoring is a powerful tool to understand the formation mechanism of earth fissure hazards, enabling the engineering and planning efforts to be more effective. To assess the evolution characteristics of the Yangshuli earth fissure hazard more completely, terrestrial laser scanning (TLS), a remote sensing technique which is regarded as one of the most promising surveying technologies in geohazard monitoring, was employed to detect the changes to ground surfaces and buildings in small- and large-scales, respectively. Time-series of high-density point clouds were collected through 5 sequential scans from 2014 to 2017 and then pre-processing was performed to filter the noise data of point clouds. A tiny deformation was observed on both the scarp and the walls, based on the local displacement analysis. The relative height differences between the two sides of the scarp increase slowly from 0.169 m to 0.178 m, while no obvious inclining (the maximum tilt reaches just to 0.0023) happens on the two walls, based on tilt measurement. Meanwhile, global displacement analysis indicates that the overall settlement slowly increases for the ground surface, but the regions in the left side of scarp are characterized by a relatively larger vertical displacement than the right. Furthermore, the comparisons of monitoring results on the same measuring line are discussed in this study and TLS monitoring results have an acceptable consistency with the global positioning system (GPS) measurements. The case study shows that the TLS technique can provide an adequate solution in deformation monitoring of earth fissure hazards, with high effectiveness and applicability.
机译:变形监测是一个强大的工具,了解地球裂缝危险的形成机制,使工程和规划努力更加有效。为了评估阳水地球裂隙危险的进化特性,将陆地激光扫描(TLS),被认为是地质血清监测中最有前途的测量技术之一的遥感技术,用于检测地面和地面的变化小型和大鳞片的建筑物。从2014到2017年通过5个顺序扫描收集了高密度点云的时间序列,然后进行预处理以过滤点云的噪声数据。基于局部位移分析,在围巾和墙壁上观察到微小的变形。围巾的两侧之间的相对高度差异从0.169米增加到0.169米到0.178米,而在两个壁上没有明显的倾斜(最大倾斜达到0.0023),基于倾斜测量。同时,全球位移分析表明整体沉降对于地面缓慢增加,但围巾左侧的区域的特征在于比右侧相对较大的垂直位移。此外,在本研究中讨论了相同测量线上的监测结果的比较,并且TLS监测结果与全球定位系统(GPS)测量有可接受的一致性。案例研究表明,TLS技术可以提供足够的地球裂缝危险的变形监测的适当解决方案,具有高效率和适用性。

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