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Combining mobile terrestrial laser scanning geometric and radiometric data to eliminate accessories in circular metro tunnels

机译:结合移动地面激光扫描几何和辐射数据,消除圆形地铁隧道中的附件

摘要

Terrestrial laser scanning (TLS) is a noninvasive technique to monitor surface conditions and morphological characteristics of structures and has been successfully introduced to the regular inspection and maintenance of metro tunnels. To accurately analyze the deformation and structural conditions of a metro tunnel, nonliner points (e.g., outliers and accessories) should be detected and eliminated. Nevertheless, the accessories are attached very closely to the liner and cannot be thoroughly eliminated by three-dimensional (3D) geometric information. This study proposes to separate the liner and accessories by combining TLS geometric and radiometric information. A refitted mobile Faro Focus(3D) X330 system is used for data collection of a new-built metro tunnel in Hangzhou, China. The results show that the corrected intensity data are an effective physical criterion and a complementary data source to remove accessories that cannot be eliminated by geometric data. After the removal of accessories by geometric and radiometric data, the remaining liner points can accurately reflect the actual structural and deformation conditions of metro tunnels.
机译:地面激光扫描(TLS)是一种用于监视表面状况和结构形态特征的非侵入性技术,已成功引入地铁隧道的常规检查和维护中。为了准确分析地铁隧道的变形和结构条件,应检测并消除非线性点(例如,异常值和附件)。但是,附件非常紧密地连接到衬管,无法通过三维(3D)几何信息彻底消除。这项研究建议通过结合TLS几何和辐射测量信息来分离衬管和附件。经过改装的移动式Faro Focus(3D)X330系统用于在中国杭州新建地铁隧道的数据收集。结果表明,校正后的强度数据是有效的物理判据,是去除几何数据无法消除的附件的补充数据源。在通过几何和辐射数据去除附件后,其余的衬砌点可以准确反映地铁隧道的实际结构和变形情况。

著录项

  • 作者

    Tan K; Cheng XJ; Ju QQ;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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