首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >UAV AND CLOSE-RANGE PHOTOGRAMMETRY TO SUPPORT GEO-MECHANICAL ANALYSIS IN SAFETY ROAD MANAGEMENT: THE “VALLONE D’ELVA” ROAD
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UAV AND CLOSE-RANGE PHOTOGRAMMETRY TO SUPPORT GEO-MECHANICAL ANALYSIS IN SAFETY ROAD MANAGEMENT: THE “VALLONE D’ELVA” ROAD

机译:UAV和近距离摄影测量,以支持安全道路管理地球机械分析:“Vallone d'Elva”路

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In the last decades, the development of geomatics and geomechanics techniques integration in the environmental field permits to obtain more detailed and accurate results, reducing the survey costs. The aim of the present work was aimed to apply these innovative combined methods and techniques in order to gain a detailed analysis of landslide hazard and on the stability condition of rocky slopes, to get useful information for subsequent design and feasibility planning of Vallone d’Elva road. During two different surveys period, geostructural surveys were carried out in situ (i.e. spatial orientation of discontinuity planes, their spacing and persistence), associated with geomatics surveys using drones (UAV technique – Unmanned Aerial Vehicle) and terrestrial photogrammetric technique to get high-resolution images of the rockwalls along the road in areas with complex orography and inaccessible. Their data processing has allowed the generation of different kind of data at different scales, like some 3D dense point clouds with a huge definition, which have been used to generate three-dimensional surfaces models. This procedure has allowed obtaining DSM (Digital Surface Model), DTMs (Digital Terrain Models) and orthophotos with centimetre resolution (mean 4 cm). Moreover, to identify the geomechanical rockmasses features, have been computed a new photogrammetric product on 16 specific rockwall sites along the road: “vertical orthophotos”, with details of few mm. Besides, over then twenty detailed DTMs of rockwalls along the entire road have been generated to measure plane orientation, spacing and other geometrical characteristics of outcropping rock masses, which have been statistically collected and analysed.
机译:在过去的几十年中,在环境领域的地理和地质力学技术的发展允许获得更详细和准确的结果,降低了调查成本。本工作的目的旨在应用这些创新的组合方法和技术,以获得对滑坡危害和岩石斜坡稳定性条件的详细分析,以获得瓦隆德埃尔瓦的后续设计和可行性规划的有用信息路。在两个不同的调查期间,地质结构调查原位进行(即,不连续平面的空间取向,它们的间距和持久性),与使用无人机(无人机技术 - 无人机)和地面摄影测量技术来获得高分辨率的地质学调查相关联沿着路的摇滚墙的图像在与复杂的地形和无法进入的区域。它们的数据处理允许在不同的尺度处生成不同类型的数据,如一些具有巨大定义的3D密集点云,这些云已被用于生成三维表面模型。该程序允许获得DSM(数字表面模型),DTM(数字地形模型)和厘米分辨率(平均4厘米)的矫正器。此外,为了识别地质力学罗马斯特征,已经在沿着道路上的16个特定的Rockwall网站上计算了新的摄影测量产品:“垂直正原耳状”,细节很少毫米。此外,已经产生了沿整个道路的岩壁的20多十个详细的DTM,以测量平面取向,间隔和覆盖岩体的其他几何特征,这些岩石群体已经过统计收集和分析。

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