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Automated construction of the Paghuashan tunnel for Taiwan High Speed Rail (THSR) project

机译:台湾高铁(TPSR)项目Paghuashan隧道的自动化施工

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摘要

The Taiwan High Speed Rail (THSR) project is the most significant infrastructure development in Taiwan, and the largest Build-Operate-Transfer (BOT) project in the world. The project is required to be completed and in operation as soon as possible. The THSR's longest main tunnel, at 7364 m long crossing Paghuashan hills, was considered as the most critical sub-phase of the project. To ensure effective control of this critical phase, the joint venture contractor brought highly efficient construction equipment and fresh planning ideas into Taiwan. The main tunnel's excavation work was carried out using a method minimizing harmful loosening of adjacent groundmass. Engineering records reveal that the Paghuashan project was implemented successfully. The project was completed two months ahead of schedule, and even recorded the best monthly excavated length of 250 m, marking a significant milestone in the progress of the THSR project. This paper introduces the cycle of excavating and lining technique used in constructing this key tunnel, and an the analysis of work productivity through the utilization of these automated equipment and facilities. This investigation also provides detailed insight and experience for future long tunnel construction, particularly in bidding for Design-Build (DB) contracts.
机译:台湾高铁(THSR)项目是台湾最重要的基础设施开发项目,也是世界上最大的建造,运营,转让(BOT)项目。该项目需要尽快完成并投入运行。 THSR最长的主隧道跨过Paghuashan丘陵,全长7364 m,被认为是该项目最关键的子阶段。为了确保对这一关键阶段的有效控制,合资承包商将高效的建筑设备和崭新的规划思想带入了台湾。主隧道的开挖工作采用了一种使相邻地基的有害松动最小化的方法来进行。工程记录表明,Paghuashan项目已成功实施。该项目比计划提前两个月完成,甚至记录了250m的最佳每月开挖长度,这标志着THSR项目进展的重要里程碑。本文介绍了用于施工该关键隧道的开挖和衬砌技术的周期,并通过利用这些自动化设备和设施来分析工作效率。这项调查还为将来的长隧道建设提供了详细的见识和经验,尤其是在设计建造合同的招标中。

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