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Rockfall hazard analysis using LiDAR and spatial modeling

机译:Rockfall hazard analysis using LiDaR and spatial modeling

摘要

Rockfalls have been significant geohazards along the Canadian Class 1 Railways (CN Rail and CF Rail) since their construction in the late 1800s. These rockfalls cause damage to infrastructure, interruption of business, and environmental impacts, and their occurrence varies both spatially and temporally. The proactive management of these rockfall hazards requires enabling technologies. This paper discusses a hazard assessment strategy for rockfalls along a section of a Canadian railway using LiDAR and spatial modeling. LiDAR provides accurate topographical information of the source area of rockfalls and along their paths. Spatial modeling was conducted using Rockfall Analyst, a three dimensional extension to GIS, to determine the characteristics of the rockfalls in terms of travel distance, velocity and energy. Historical rockfall records were used to calibrate the physical characteristics of the rockfall processes. The results based on a high-resolution digital elevation model from a LiDAR dataset were compared with those based on a coarse digital elevation model. A comprehensive methodology for rockfall hazard assessment is proposed which takes into account the characteristics of source areas, the physical processes of rockfalls and the spatial attribution of their frequency and energy. (C) 2010 Elsevier B.V. All rights reserved.
机译:自1800年代末建造以来,落石一直是加拿大1级铁路(CN铁路和CF铁路)沿线的重大地质灾害。这些落石事故对基础设施造成破坏,业务中断和环境影响,并且它们的发生在空间和时间上都不同。主动管理这些落石灾害需要技术支持。本文讨论了使用LiDAR和空间建模对加拿大铁路沿线一段岩崩的危险性评估策略。 LiDAR可提供落石源区域及其路径的准确地形信息。使用Rockfall Analyst(对GIS的三维扩展)进行了空间建模,以确定了落石在行进距离,速度和能量方面的特征。历史上的落石记录用于校准落石过程的物理特征。将基于LiDAR数据集的高分辨率数字高程模型的结果与基于粗略数字高程模型的结果进行了比较。提出了一种综合的岩崩灾害评估方法,该方法应考虑到源区的特征,岩崩的物理过程以及其频率和能量的空间属性。 (C)2010 Elsevier B.V.保留所有权利。

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