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Observe the temporal evolution of deep tunnel's 3D deformation by 3D laser scanning in the Jinchuan No. 2 Mine

机译:通过金川二矿的3D激光扫描观察深部隧道3D变形的时间演化

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摘要

The three-dimensional (3D) deformation of underground tunnel is meaningful for assessing its mechanical stability, especially for the tunnel with large deformation disaster. In this study, a technology for measuring the 3D deformation of tunnel is presented based on a 3D laser scanner and processing algorithm for point cloud data. This technology includes splicing technology for multi piece point clouds in the same time, filtering technology for 3D point cloud data at individual times, alignment technology for point cloud data from different times, and data extraction technology for typical cross-section deformation of the tunnel and calculates the 3D deformation of the tunnel at different times. This technology was applied to monitor the temporal evolution of the 3D deformation of a deep tunnel in the Jinchuan No. 2 Mine, where the large deformation of the surrounding rock caused serious failure of the supporting structures. The resulting characterization of the dimensional and temporal deformation process of the surrounding rock in the Jinchuan underground tunnel included the 2D deformation distribution characteristics of the cross section, the spatial deformation distribution of the tunnel's 3D surface, and the 4D spatiotemporal evolution process of the tunnel's deformation. The observed results provide key information for predicting deformational performance and determining the reasonable support opportunity for a tunnel undergoing large deformation problem.
机译:地下隧道的三维(3D)变形对于评估其机械稳定性具有重要意义,尤其是对于变形灾害较大的隧道而言。在这项研究中,提出了一种基于3D激光扫描仪和点云数据处理算法的隧道3D变形测量技术。该技术包括同时进行多片点云的拼接技术,针对单个时间的3D点云数据的过滤技术,针对不同时间的点云数据的对齐技术以及针对隧道和隧道的典型横截面变形的数据提取技术。计算隧道在不同时间的3D变形。该技术被用于监测金川二号矿深层隧道的3D变形的时间演变,该隧道的围岩大变形导致支撑结构严重破坏。对金川地下隧道围岩的时空变形过程进行表征,包括断面的二维变形分布特征,隧道3D表面的空间变形分布以及隧道变形的4D时空演化过程。 。观测结果为预测变形性能和确定发生大变形问题的隧道提供合理的支撑机会提供了关键信息。

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