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Laser Scanning Systems and Techniques in Rockfall Source Identification and Risk Assessment: A Critical Review

机译:在岩崩激光扫描系统和技术源识别和风险评估:一个评论

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摘要

Rockfall poses risk to people, their properties and to transportation ways in mountainous and hilly regions. This catastrophe shows various characteristics such as vast distribution, sudden occurrence, variable magnitude, strong fatalness and randomicity. Therefore, prediction of rockfall phenomenon both spatially and temporally is a challenging task. Digital Terrain model (DTM) is one of the most significant elements in rockfall source identification and risk assessment. Light detection and ranging (LiDAR) is the most advanced effective technique to derive high-resolution and accurate DTM. This paper presents a critical overview of rockfall phenomenon (definition, triggering factors, motion modes and modeling) and LiDAR technique in terms of data pre-processing, DTM generation and the factors that can be obtained from this technique for rockfall source identification and risk assessment. It also reviews the existing methods that are utilized for the evaluation of the rockfall trajectories and their characteristics (frequency, velocity, bouncing height and kinetic energy), probability, susceptibility, hazard and risk. Detail consideration is given on quantitative methodologies in addition to the qualitative ones. Various methods are demonstrated with respect to their application scales (local and regional). Additionally, attention is given to the latest improvement, particularly including the consideration of the intensity of the phenomena and the magnitude of the events at chosen sites.
机译:落石对人构成危险,他们的属性和在山区和运输方式丘陵地区。如巨大的分布特点,突然发生,变量大小,强烈的危险性和随机性。落石时空上的现象是一个具有挑战性的任务。(DTM)是最重要的元素之一落石源识别和风险评估。最先进有效的技术吗获得高分辨率和准确的DTM。提出了一个关键的落石的概述现象(定义、触发因素运动模式和建模)和激光雷达技术数据预处理方面,DTM生成和可以获得的因素技术识别和岩崩来源风险评估。用于评估的方法落石轨迹和他们特性(频率、速度、弹跳高度和动能),概率,敏感性,危害和风险。是考虑定量方法除了定性的人。对他们的应用程序(本地和扩展区域)。最新的改进,特别是包括的强度的考虑现象和事件的大小选择场地。

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