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Geotechnical applications of LiDAR for geomechanical characterization in drill and blast tunnels and representative 3-dimensional discontinuum modelling.

机译:LiDAR在钻探和爆破隧道的岩土力学表征中的岩土工程应用以及代表性的3维不连续面建模。

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摘要

Contractors and tunnelling engineers consistently seek to identify techniques and equipment to improve the efficiency and lower the cost of tunnelling projects. Based on the recent successes of rock slope characterization with laser scanning techniques, the author proposes 3D laser scanning (LiDAR) as a new tool for geotechnical assessment in drill and blast tunnels.;The primary implications of the thesis are that a) LiDAR data collection at the face of a drill and blast tunnel operation is practical and potentially has great value, b) data extraction is possible for a wide range of applications, and c) that discontinuum stability analysis becomes a much more powerful tool with the integration of LiDAR data. The cumulative result of the work presented is a proposed workflow for integrating LiDAR into tunneling operations.;It has been demonstrated that practical deployment of a phase-based LiDAR system at the face of an active tunnel heading is possible with a simple tripod setup. With data collection requiring only 5 minutes at the tunnel face, it was shown that this technique could be integrated into geotechnical evaluation without interruption of the excavation cycle. Following the successful scanning at two active tunnelling projects and two completed unlined tunnels, the research explored the applications of the data. With detailed geometric data of the heading as it advanced, the author identified applications of interest to the contractor/on-site engineer as well as the geotechnical engineer or geologist responsible for rockmass characterization. Operational applications included the extraction of information about tunnel geometry and installed support, while geomechanical information provided important elements of rockmass characterization. Building on the success of retrieving joint network information, the research investigated the potential for LiDAR-derived structural databases to be the basis for highly-representative 3D discrete element models. These representative models were found to be useful for back-analysis or as predictive tools for future tunnel design.
机译:承包商和隧道工程师一直在寻求确定技术和设备的方法,以提高效率并降低隧道工程的成本。基于最近利用激光扫描技术表征岩石边坡的成功经验,作者提出了3D激光扫描(LiDAR)作为钻探和爆破隧道岩土工程评估的一种新工具。本文的主要意义是:a)LiDAR数据收集面对钻探和爆破隧道的操作是实用的,并且可能具有很大的价值,b)数据提取对于广泛的应用是可能的,并且c)通过集成LiDAR数据,不连续性稳定性分析成为功能更强大的工具。所展示工作的累积结果是将LiDAR集成到隧道作业中的拟议工作流程。业已证明,可以通过简单的三脚架设置在主动隧道掘进工作面实际部署基于相位的LiDAR系统。在仅需要5分钟的隧道工作面的数据采集的情况下,结果表明,该技术可以集成到岩土工程评估中,而不会中断挖掘周期。在两个活动的隧道工程和两个完整的无衬砌隧道中成功扫描之后,该研究探索了数据的应用。随着前进方向的详细几何数据,作者确定了承包商/现场工程师以及负责岩体表征的岩土工程师或地质学家感兴趣的应用。业务应用包括提取有关隧道几何形状和已安装支撑的信息,而岩土力学信息则提供了岩体表征的重要元素。在成功检索联合网络信息的基础上,该研究调查了LiDAR派生的结构数据库成为具有高度代表性的3D离散元素模型的基础的潜力。发现这些代表性模型可用于反分析或作为未来隧道设计的预测工具。

著录项

  • 作者

    Fekete, Stephanie.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Geotechnology.
  • 学位 M.A.Sc.
  • 年度 2010
  • 页码 164 p.
  • 总页数 164
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:28

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