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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Rapid mapping and analysing rock mass discontinuities with 3D terrestrial laser scanning in the underground excavation
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Rapid mapping and analysing rock mass discontinuities with 3D terrestrial laser scanning in the underground excavation

机译:快速映射和分析地下挖掘3D陆地激光扫描的岩体块状不连续性

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摘要

Whilst laser scanning techniques have been shown to facilitate rapid identification and analysis of rock mass characteristics, relatively little research has been conducted for 3D laser scanning in underground spaces. In the present study, a semi-automatic laser scanning method has been presented for non-contact discontinuity identification and rock mass characterisation in a Western Australian underground gold mine. The accuracy of the 3D laser scanning technique was compared with traditional window mapping with a strong correlation being noted. The average dip/dip direction discrepancy between the two methods was found to be 1.5 degrees/16 degrees and attributed to the ability of 3D laser scanning to collect significant quantities of data when compared to traditional methods. Potential sources of error, together with the influence of the scale effect, were discussed with an optimum scanning resolution of 7.5 mm at 5 m being noted to provide a combination of significantly reduced collection and processing time and high levels of accuracy. Overall, the present study demonstrated the potential of 3D laser scanning techniques to replace traditional methods with increased efficiency and accuracy in underground mines.
机译:虽然已经显示了激光扫描技术,以便于快速识别和分析岩体特征,但在地下空间中的3D激光扫描已经进行了相对较少的研究。在本研究中,已经介绍了西澳大利亚地下金矿的非接触不连续识别和岩石批量表征的半自动激光扫描方法。将3D激光扫描技术的准确性与传统窗口映射进行了比较,具有强相关的相关性。发现两种方法之间的平均浸渍/倾角差异为1.5度/ 16度,并且归因于3D激光扫描的能力与传统方法相比,在3D激光扫描收集大量数据。潜在的误差来源,以及比例效应的影响,以最佳扫描分辨率为7.5mm,以便提供显着减少收集和处理时间和高精度的组合。总体而言,本研究表明,3D激光扫描技术的潜力,以提高地下矿井的效率和准确性提高传统方法。

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