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The use of an unmanned aerial vehicle for fracture mapping within a marble quarry (Carrara, Italy): photogrammetry and discrete fracture network modelling

机译:使用无人飞行器在大理石采石场(意大利卡拉拉)内进行裂缝测绘:摄影测量和离散裂缝网络建模

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摘要

This paper describes the use of a drone in collecting data for mapping discontinuities within a marble quarry. A topographic survey was carried out in order to guarantee high spatial accuracy in the exterior orientation of images. Photos were taken close to the slopes and at different angles, depending on the orientation of the quarry walls. This approach was used to overcome the problem of shadow areas and to obtain detailed information on any feature desired. Dense three-dimensional (3D) point clouds obtained through image processing were used to rebuild the quarry geometry. Discontinuities were then mapped deterministically in detail. Joint attitude interpretation was not always possible due to the regular shape of the cut walls; for every discontinuity set we therefore also mapped the uncertainty. This, together with additional fracture characteristics, was used to build 3D discrete fracture network models. Preliminary results reveal the advantage of modern photogrammetric systems in producing detailed orthophotos; the latter allow accurate mapping in areas difficult to access (one of the main limitations of traditional techniques). The results highlight the benefits of integrating photogrammetric data with those collected through classical methods: the resulting knowledge of the site is crucially important in instability analyses involving numerical modelling.
机译:本文介绍了无人机在收集数据以绘制大理石采石场中的不连续性方面的用途。为了保证图像外部定向的高空间精度,进行了地形调查。根据采石场墙壁的方向,在靠近斜坡和不同角度的位置拍摄照片。该方法用于克服阴影区域的问题并获得有关所需任何特征的详细信息。通过图像处理获得的密集三维(3D)点云用于重建采石场的几何形状。然后确定性地详细绘制不连续性。由于切割墙的规则形状,联合姿态的解释并不总是可行的。因此,对于每个不连续集,我们还绘制了不确定性。这与附加的裂缝特征一起用于构建3D离散裂缝网络模型。初步结果揭示了现代摄影测量系统在产生详细正射影像方面的优势。后者可以在难以接近的区域进行精确的测绘(传统技术的主要限制之一)。结果突出了将摄影测量数据与通过经典方法收集的数据进行集成的好处:在有关数值建模的不稳定性分析中,所获得的现场知识至关重要。

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