基于贴近摄影测量的高位危岩体三维地质建模方法研究与应用

    STUDY AND APPLICATION OF 3D GEOLOGICAL MODELING METHOD FOR HIGH DANGEROUS ROCK BASED ON NAP-OF-THE-OBJECT PHOTOGRAMMETRY

    • 摘要: 近年来无人机遥感技术被广泛应用于复杂地质条件的勘察工作中,但利用贴近摄影测量技术准确还原高陡边坡表征及其结构面特征仍有不足,尤其在结合多组结构面的三维地质模型构建方法上还存在问题。为了实现对岩体结构面信息的准确描述和高位危岩体三维地质模型的构建,本文以四川省雅安市宝兴县某高位危岩体作为研究对象,通过无人机贴近摄影测量与智能航线规划设计相结合的方式获取研究区光学影像,采用运动恢复结构法生成地质结构体的高精度点云数据;利用霍夫变换算法获取点云法向信息并与彩色HSV轮盘相结合,完成对结构面的渲染赋色和信息解译;使用Rhinoceros与Griddle插件完成高位危岩体的精细化三维地质模型的快速建立;利用3DEC离散元软件模拟评估危岩体破坏后潜在运动行为,通过对比崩落块体空间位置及尺寸,验证了三维地质模型的可靠性和实用性,可为高位危岩体三维地质建模提供参考。

       

      Abstract: In recent years,unmanned aerial vehicle(UAV)remote sensing technology has been widely applied in the investigation of complex geological conditions. However,current UAV photogrammetry methods still face limitations in accurately reconstructing the surface features of high-steep slopes and extracting discontinuity set information,particularly in constructing three-dimensional geological models involving multiple discontinuity sets. To achieve accurate characterization of discontinuity sets and to construct three-dimensional geological models of high-risk rock masses,this study selected a high-risk rock mass in Baoxing County,Ya'an City,Sichuan Province,as the research object. Based on high-precision optical images acquired through nap-of-the-object photogrammetry and intelligent flight planning,the Structure-from-Motion method was used to generate high-precision point cloud data of the geological structure. The Hough transform algorithm was applied to extract point cloud normal vectors,and the HSV color wheel was employed to color-code different discontinuity sets,enabling the interpretation of discontinuity set information. A three-dimensional geological model of the high-level hazardous rock mass with multiple discontinuity sets was rapidly constructed using Rhinoceros software and the Grillage plug-in. The 3DEC discrete element software was then used to simulate the potential movement behavior of the hazardous rock mass. By comparing the spatial position and morphological features of simulated collapsed blocks with actual observations,the reliability and applicability of the three-dimensional geological model were validated. This approach provides a reference for three-dimensional geological modeling of high-steep slopes.

       

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