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首页> 外文期刊>Tunnelling and underground space technology >Mapping shotcrete thickness using LiDAR and photogrammetry data: Correcting for over-calculation due to rockmass convergence
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Mapping shotcrete thickness using LiDAR and photogrammetry data: Correcting for over-calculation due to rockmass convergence

机译:使用LiDAR和摄影测量数据绘制喷浆混凝土厚度:校正由于岩体收敛引起的过计算

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摘要

The benchmark method of measuring shotcrete thickness from 3D LiDAR and photogrammetry data involves scanning sequential blast rounds, aligning the data in a 3D environment, and calculating the spatial difference between the two models. The calculated difference between the two 3D surface models is measured as the thickness of the sprayed concrete. This methodology does not account for the convergence of the rockmass that naturally occurs between the scanning protocols, nor is it included in the difference equation, and resultantly the user over-measures the thickness of the sprayed concrete. The over-measurement can be corrected through changing the time of scanning with respect to the excavation sequence or calibrating the solution based on known rockmass convergence rates or numerical modelling. The use of 3D imaging data for the calculation of shotcrete thickness will remain a useful tool for geotechnical engineers, but corrections must made to the state-of-practice methodology in order to achieve accurate results.
机译:从3D LiDAR和摄影测量数据测量喷射混凝土厚度的基准方法包括扫描顺序的爆破弹道,在3D环境中对齐数据并计算两个模型之间的空间差异。将两个3D表面模型之间的计算差异作为喷涂混凝土的厚度进行测量。这种方法没有考虑到在扫描协议之间自然发生的岩体收敛,也没有包括在差分方程中,因此用户过度测量了喷射混凝土的厚度。可以通过更改相对于开挖顺序的扫描时间或基于已知的岩体收敛速率或数值建模来校准解决方案来纠正过大的测量。将3D影像数据用于喷射混凝土厚度的计算将仍然是岩土工程师的有用工具,但是必须对实际操作方法进行校正才能获得准确的结果。

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