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首页> 外文期刊>Geosciences >Rock Mass Characterization of Karstified Marbles and Evaluation of Rockfall Potential Based on Traditional and SfM-Based Methods;Case Study of Nestos,Greece
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Rock Mass Characterization of Karstified Marbles and Evaluation of Rockfall Potential Based on Traditional and SfM-Based Methods;Case Study of Nestos,Greece

机译:基于传统和SFM的方法的岩溶大理石和岩石潜力评估的岩石群体;希腊巢穴的案例研究

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Rockfall consists one of the most harmful geological phenomena for the man-made environment. In order to evaluate the rockfall hazard, a variety of engineering geological studies should be realized, starting from conducting a detailed field survey and ending with simulating the trajectory of likely to fail blocks in order to evaluate the kinetic energy and the runout distance. The last decade, new technologies, i.e., remotely piloted aircraft systems (RPAS) and light detection and ranging (LiDAR) are frequently used in order to obtain and analyze the characteristics of the rock mass based on a semi-automatic or manual approach. Aiming to evaluate the rockfall hazard in the area of Nestos, Greece, we applied both traditional and structure from motion (SfM)-oriented approaches and compared the results. As an outcome, it was shown that the semi-automated approaches can accurately detect the discontinuities and define their orientation, and thus can be used in inaccessible areas. Considering the rockfall risk, it was shown that the railway line in the study area is threaten by a rockfall and consequently the construction of a rockfall netting mesh or a rock shed is recommended.
机译:岩石由人造环境中最有害地质现象组成。为了评估岩石危险,应该实现各种工程地质研究,从进行详细的现场调查并结束,以模拟可能失败块的轨迹,以评估动能和跳动距离。过去十年来,新技术,即远程试点的飞机系统(RPA)和光检测和测距(LIDAR)经常使用,以便基于半自动或手动方法获得和分析岩体的特性。旨在评估希腊巢穴区域的岩石危险,我们从运动(SFM)的方法和结构施加了传统和结构,并比较了结果。作为结果,结果表明,半自动化方法可以准确地检测不连续性并定义其取向,从而可以在不可访问的区域中使用。考虑到岩石风险,结果表明,研究区域中的铁路线受到岩石的威胁,并因此建议建造岩石网或岩石棚。

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