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Photogrammetry and laser scanning for analyzing slope stability and rock fall runout along the Domodossola-Iselle railway, the Italian Alps

机译:摄影测量和激光扫描,用于分析意大利阿尔卑斯山脉多莫多索拉-伊塞尔铁路沿线的边坡稳定性和落石跳动

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摘要

In Italy, railways crossing the alpine valleys are a vital means of civil and commercial communications with the rest of Europe. The geomorphologic configuration and the climatic conditions, especially in winter and spring, can cause rock fall events resulting in railway service interruptions and damage to infrastructure and, in the worst case, to people. There were rock fall events at a slope adjacent to the Domodossola-Iselle railway, most recently in 2004. This paper evaluates the stability of a mountain slope and maps rock fall hazards through the modeling of potential runout trajectories. Traditional geological, geomorphological and geo-engineering surveys were combined with data derived from digital terrestrial photogrammetry. Stereo photographic pairs of rocky outcrops in inaccessible areas were acquired from a helicopter. Data from photogrammetry, topographic measurements and laser scanning were then integrated to build a digital model of the slope, to characterize the rock mass and block geometry, and to define possible runout trajectories. The geomatic methods used have yielded oriented stereo-images, orthophotos and precise digital models of rocky wedges. Geometrical and structural characteristics of slopes, such as joint attitude, spacing and persistence, and block volumes, were also derived. The results were used together with a deterministic limit equilibrium method to evaluate slope stability. We assessed the probabilistic distribution of rock fall end points and kinetic energy along the rock falling paths and existing barriers, and created a hazard map based on the spatial distribution of trajectories, rock fall transit density and kinetic energy.
机译:在意大利,穿越高山山谷的铁路是与欧洲其他地区进行民用和商业通讯的重要手段。地貌结构和气候条件,尤其是在冬季和春季,可能会导致岩石崩塌事件,从而导致铁路服务中断并破坏基础设施,甚至在最坏的情况下对人员造成损害。最近一次发生在多莫多索拉-伊塞尔铁路附近的斜坡上,在2004年发生了岩崩事件。本文评估了山坡的稳定性,并通过对潜在跳动轨迹进行建模来绘制岩崩危害的地图。传统的地质,地貌和地球工程调查与数字地面摄影测量法得出的数据结合在一起。从直升飞机上获取了在无法进入的区域中的立体摄影岩石露头对。然后将来自摄影测量,地形测量和激光扫描的数据进行整合,以建立斜坡的数字模型,以表征岩体和块体的几何形状,并定义可能的跳动轨迹。所使用的地理方法产生了定向的立体图像,正射影像和岩石楔形的精确数字模型。还推导出了边坡的几何和结构特征,例如关节姿态,间距和持久性以及块体体积。结果与确定性极限平衡法一起用于评估边坡稳定性。我们评估了沿落石路径和现有障碍物的落石终点和动能的概率分布,并基于轨迹的空间分布,落石过渡密度和动能创建了一个危险图。

著录项

  • 来源
    《Geomorphology》 |2013年第1期|110-122|共13页
  • 作者单位

    Earth Sciences Department and Centre of Geotechnologies, University of Siena, Via Vetri Vecchi 34, 52027 San Giovanni Valdarno (AR), Italy;

    Earth Sciences Department and Centre of Geotechnologies, University of Siena, Via Vetri Vecchi 34, 52027 San Giovanni Valdarno (AR), Italy;

    Earth Sciences Department and Centre of Geotechnologies, University of Siena, Via Vetri Vecchi 34, 52027 San Giovanni Valdarno (AR), Italy;

    Earth Sciences Department and Centre of Geotechnologies, University of Siena, Via Vetri Vecchi 34, 52027 San Giovanni Valdarno (AR), Italy;

    Earth Sciences Department and Centre of Geotechnologies, University of Siena, Via Vetri Vecchi 34, 52027 San Giovanni Valdarno (AR), Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    rocky slope; photogrammetry; user scanning; stability analysis; runout;

    机译:岩石边坡摄影测量用户扫描;稳定性分析;用完;

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