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Basic kinematic analysis of a rock slope using terrestrial 3D laser scanning on the M-22 highroad pilot site

机译:M-22 Highroad试点站点使用地面3D激光扫描的岩石斜率基本运动分析

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Terrestrial laser scanning has propelled recent advancements in rock slope engineering. Building models with millions of points to discretize an actual slope has provided resolutions which empower computer-based analysis/measurements of rock slopes as a supplement/substitute for conventional data acquisition. Herein, we are following-up such trends at a pilot site on the M-22 highroad near Ljig (Serbia). The site is composed of stratified Cretaceous flysch sediments, traversed by several joint sets, making a convenient setting for potential failures. Prior to the kinematic analysis, modeling of the 3D surface has been performed on 1 cm resolution point cloud, obtained by Leica Scan Station 2. The 3D surface model was then mapped for the planar discontinuities, forwarded to the kinematic analysis for planar, wedge and toppling failures. The analysis matches with previous findings, indicating that the most dominant failure type is a planar slide, showing that proposed methodology yields reliable and concurrent results.
机译:陆地激光扫描在岩石坡工程中推动了最近的进步。建筑模型具有数百万点以离散的实际斜率提供了解决方案,该分辨率提供了基于计算机的分析/测量岩石斜坡作为常规数据采集的补充/替代品。在此,我们在Ljig(塞尔维亚)附近的M-22 Highroad上的试点网站上提出了这样的趋势。该网站由分层的白垩纪杂种沉积物组成,由几个关节套进行,为潜在故障提供方便的设置。在运动学分析之前,通过Leica Scan Station 2获得的1cm分辨率点云进行了3D表面的建模。然后将3D表面模型映射到平面不连续,转发到平面,楔形和平面的运动分析倒塌的失败。分析与以前的发现相匹配,表明最主导的故障类型是平面幻灯片,表明提出的方法产生可靠和并发的结果。

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