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现代矿业 ›› 2026, Vol. 42 ›› Issue (06): 158-164,171.

• 岩土工程 • 上一篇    下一篇

西藏高海拔露天矿边坡结构面智能识别与稳定性研究

闫子豪1 王超佩1 何 涛1 丛俊龙1 骆兴华1 代碧波2 任新华2   

  1. 1. 西藏华泰龙矿业开发有限公司;2. 中钢集团马鞍山矿山研究总院股份有限公司
  • 出版日期:2026-06-25 发布日期:2026-07-27

Research on Structural Planes Intelligent Identification and Stability of High-altitude Open-pit Mine Slopes in Xizang

YAN Zihao1 WANG Chaopei1 HE Tao1 CONG Junlong1 LUO Xinghua1 DAI Bibo2 REN Xinhua2   

  1. 1. Xizang Huatailong Mining Development Co.,Ltd.; 2. Sinosteel Maanshan General Institute of Mining Research Co.,Ltd.
  • Online:2026-06-25 Published:2026-07-27

摘要: 为解决西藏高海拔露天矿岩质边坡稳定性问题,将采场边坡划分为 3 个结构面识别 区域,采用无人机倾斜摄影与 SIFT 算法构建三维模型,结合自主研发的 RMV3D 软件,实现了结构 面高精度识别,并构建了完整的边坡稳定性评价技术体系。结果表明:通过极点等密度图法和聚 类分析识别优势结构面,区域 1 和区域 3 以近直立结构面为主(295°∠87°、197°∠85°,占比约 70%), 区域 2 发育 2 组结构面(249°∠55°与 337°∠76°)。赤平投影分析表明,台阶边坡存在局部破坏风险, 区域 2 和区域 3 可能沿组合结构面发生楔形体破坏;定量计算显示,在结构面黏聚力 20 kPa、内摩 擦角 28°条件下,区域 2和区域 3的安全系数分别为 2.131和 2.852,满足规范要求。研究为高海拔复 杂地形边坡稳定性评价提供了技术参考。

关键词: 无人机倾斜摄影, 岩质边坡, 结构面识别, 边坡破坏模式分析

Abstract: To address the stability issue of the rock slopes on the open-pit mining site in Xizang, the mining site slopes were divided into three structural face identification areas. Using UAV oblique pho⁃ tography and the SIFT algorithm,a 3D model was constructed. Combined with the independently devel⁃ oped RMV3D software,the high-precision identification of structural faces was achieved,and a complete slope stability evaluation technical system was constructed. The results show that by using the pole isoden⁃ sity map method and cluster analysis to identify the dominant structural faces,Area 1 and Area 3 have mainly nearly upright structural faces(295°∠87°,197°∠85°,accounting for approximately 70%),while Area 2 has two sets of structural faces(249°∠55° and 337°∠76°). The oblique projection analysis indi⁃ cates that there is a local risk of slope failure in the step slopes,and Areas 2 and 3 may undergo wedge�shaped failure along the combined structural faces. Quantitative calculations show that under the condi⁃ tions of cohesion of 20 kPa and internal friction angle of 28°,the safety factors of Area 2 and Area 3 are 2.131 and 2.852 respectively,meeting the specification requirements. The research provides technical ref⁃ erences for the stability evaluation of slopes in high-altitude complex terrain.

Key words: UAV oblique photogrammetry, rock slope, structural plane identification, slope failure