矿山岩体质量非均匀性表征及其在巷道差异化支护中的应用

    EVALUATION OF HETEROGENOUS ROCK MASS QUALITY AND ITS APPLICATION IN DIFFERENTIAL SUPPORT OF ROADWAY

    • 摘要: 考虑岩体质量的非均匀性进行矿山巷道分级分区差异化支护,在确保安全的前提下降低支护费用具有现实的工程意义。使用深度学习从岩体内部钻孔岩芯照片中自动计算RQD,结合摄影测量与最短路径搜索算法从岩体表面图像中识别结构面迹线,实现快速准确的岩体质量评价;利用地质统计学理论挖掘实测岩体质量的空间相关性,获取各向异性实验半变异函数,空间插值建立非均匀岩体质量块体模型;以甲玛铜矿为例,根据巴顿岩体质量Q设计巷道分级分区差异化支护方案。结果表明岩体质量在同一岩性上是非均匀的也是连续的,但在岩性分界面处体现较强的变异性;根据岩体质量进行巷道的分级分区差异化支护,可以合理选择巷道位置、支护方式与支护参数。研究旨在建立一套矿山岩体质量非均匀性表征及巷道差异化支护的方法体系,实现巷道支护降本增效的目标。

       

      Abstract: It is of significant engineering value to implement differential support strategies for roadways based on precise evaluations of heterogeneous rock mass quality, as this approach can reduce support costs while ensuring roadway safety. In this study, deep learning is employed to automatically calculate Rock Quality Designation (RQD) from borehole core images, while discontinuities are identified from rock mass exposures using photogrammetry and a shortest-path search algorithm. This enables fast and accurate rock mass quality assessment. Additionally, geostatistical methods are applied to analyze the spatial correlation of measured rock mass quality, deriving an anisotropic semivariogram. A block model of heterogeneous rock mass quality is then established using spatial interpolation. Using the Jiama Copper Mine as a case study, differential roadway support is designed based on the heterogeneous rock mass quality (Q-system). The results demonstrate that rock mass quality is both heterogeneous and continuous within the same lithology, but exhibits strong variability at lithological boundaries. By considering heterogeneous rock mass quality, optimal roadway positioning, support methods, and parameters can be determined. This study aims to establish a systematic framework for precise rock mass quality evaluation and differentiated roadway support, ultimately achieving cost-effective and efficient mine support solutions.

       

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