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Cross-Section Deformation Analysis and Visualization of Shield Tunnel Based on Mobile Tunnel Monitoring System

机译:基于移动隧道监测系统的盾构隧道断面变形分析与可视化

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摘要

With the ongoing developments in laser scanning technology, applications for describing tunnel deformation using rich point cloud data have become a significant topic of investigation. This study describes the independently developed a mobile tunnel monitoring system called the second version of Tunnel Scan developed by Capital Normal University (CNU-TS-2) for data acquisition, which has an electric system to control its forward speed and is compatible with various laser scanners such as the Faro and Leica models. A comparison with corresponding data acquired by total station data demonstrates that the data collected by CNU-TS-2 is accurate. Following data acquisition, the overall and local deformation of the tunnel is determined by denoising and 360° deformation analysis of the point cloud data. To enhance the expression of the analysis results, this study proposes an expansion of the tunnel point cloud data into a two-dimensional image via cylindrical projection, followed by an expression of the tunnel deformation through color difference to visualize the deformation. Compared with the three-dimensional modeling method of visualization, this method is easier to implement and facilitates storage. In addition, it is conducive to the performance of comprehensive analysis of problems such as water leakage in the tunnel, thereby achieving the effect of multiple uses for a single image.
机译:随着激光扫描技术的不断发展,使用富点云数据描述隧道变形的应用已成为研究的重要课题。这项研究描述了由首都师范大学(CNU-TS-2)自主开发的移动隧道监控系统,称为隧道扫描的第二版(CNU-TS-2),用于数据采集,该系统具有控制前进速度的电气系统,并且与各种激光兼容扫描仪,例如Faro和Leica模型。与全站仪数据获取的相应数据的比较表明,CNU-TS-2收集的数据是准确的。数据采集​​之后,通过对点云数据进行降噪和360°变形分析来确定隧道的整体变形和局部变形。为了增强分析结果的表达,本研究提出了通过圆柱投影将隧道点云数据扩展为二维图像,然后通过色差表达隧道变形以可视化变形的方法。与可视化的三维建模方法相比,该方法更易于实现并便于存储。另外,它有利于对诸如隧道中的漏水之类的问题进行综合分析,从而获得对单个图像的多次使用的效果。

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