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Photogrammetry in underground mining ground control - Lucky Friday mine case study

机译:地下采矿地面控制的摄影测量 - 幸运星期五矿案例研究

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Deformation and support conditions in underground mines are typically monitored through visual inspection and geotechnical instrumentation. However, the subjectivity of visual observation techniques can result in ambiguous or incomplete analyses with little quantifiable data. Monitoring displacements with conventional instrumentation can be expensive and time-consuming, and the information collected is typically limited to just a few locations. Moreover, conventional methods usually provide vector rather than tensor descriptions of geometry changes, the latter of which offer greater insight into rock movements and potential ground fall hazards. To address these issues, researchers from the National Institute for Occupational Safety and Health's Spokane Mining Research Division have developed and evaluated photogrammetric systems for ground control monitoring applications in underground mines. In cooperation with the Hecla Mining Company, photogrammetric surveys were conducted over a three-year period at the Lucky Friday mine in northern Idaho, United States of America, as underhand cut-and-fill mining methods were used to mine Ag-Pb-Zn ore in rockburst-prone ground conditions at depths approaching 2,100 metres. A photogrammetric system was developed for underground use at the mine that is not only mobile, rugged, and relatively inexpensive, but also capable of producing measurements comparable to conventional displacement-measuring instrumentation. This paper describes the components of the photogrammetric system, discusses the use of point cloud analyses from photogrammetric surveys to monitor bulk deformation in underground entries, and explains the advantages of full tensor descriptions of three-dimensional (3D) ground movement, particularly in regard to the interpretation of potential movement along fault intercepts. The practical use of photogrammetry to augment measurements from conventional instruments, such as crackmeters, is presented, as well as the use of photogrammetric data in conjunction with 3D visualisation software to synthesise and integrate complex information from diverse sources including geology, mining configuration, seismicity, and geotechnical instrumentation.
机译:通常通过视觉检查和岩土工程监测地下矿井中的变形和支撑条件。然而,视觉观察技术的主体性可能导致含糊不清的数据的模糊或不完整的分析。监测传统仪器的位移可能是昂贵且耗时的,并且收集的信息通常限于仅限几个位置。此外,常规方法通常提供矢量而不是几何变化的张量描述,其后者提供了更大的洞察岩石运动和潜在的地面灾害危险。为了解决这些问题,来自国家职业安全和健康斯波坎矿业研究部门研究员的研究人员已经开发出的地下矿山地面控制监测应用的摄影测量系统。与HeCla矿业公司合作,摄影测量调查是在美利坚合众国北爱达荷州幸运星期五矿的一个三年内进行的,因为已经用作挖掘了AG-PB-Zn矿石在摇滚笨拙的地面条件下,深度接近2,100米。开发了一种摄影测量系统,用于在矿井的地下使用,不仅是移动,粗糙和相对便宜的地下使用,而且能够产生与传统位移测量仪器相当的测量。本文介绍了摄影测量系统的组件,讨论了光点云分析从摄影测量调查,监测地下条目中的散装变形,并解释了三维(3D)地球运动的完全张量描述的优点,特别是在沿着故障拦截的潜在运动的解释。对照测量的实际使用从传统仪器(例如噼啪嗒ch泥板)以及使用摄影测量数据以及使用地质,采矿配置,地震性的不同来源合成和集成复杂信息,以及从包括地质,采矿配置,地震性的不同来源的复杂信息,以及使用摄影测量数据和岩土工程。

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