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隧道建设(中英文) ›› 2026, Vol. 46 ›› Issue (6): 1359-1382.DOI: 10.3973/j.issn.2096-4498.2026.06.019

• 数据统计 • 上一篇    下一篇

Global Typical Case Statistics and Development Analysis of Full-Face Tunnel Boring Machines(全球全断面隧道掘进机典型应用工程案例统计与发展分析)

韩佳霖, 刘学, 王贤钧*, 谢铮   

  1. (中国铁建重工集团股份有限公司, 湖南 长沙 410100)
  • 出版日期:2026-06-20 发布日期:2026-06-20
  • 作者简介:韩佳霖(1987—),男,辽宁沈阳人,2023年毕业于西南交通大学,先进制造专业,博士,高级工程师,主要从事全断面隧道掘进机研发生产工作。E-mail: hanjialin@crchi.com。*通信作者: 王贤钧, E-mail: 862083930@qq.com。

Global Typical Case Statistics and Development Analysis of Full-Face Tunnel Boring Machines

HAN Jialin, LIU Xue, WANG Xianjun*, XIE Zheng   

  1. (China Railway Construction Heavy Industry Corporation Limited, Changsha 410100, Hunan, China)
  • Online:2026-06-20 Published:2026-06-20

摘要: 基于行业统计与工程案例数据,对截至2024年底全球全断面隧道掘进机进行分析,包括土压平衡盾构、泥水平衡盾构、TBM、顶管机等主要机型的生产总量、保有量与市场格局,聚焦全球范围内此类设备在直径、坡度、埋深、连续掘进距离、转弯半径、进尺量等6个维度典型案例情况。结果表明,当前中国已成为全球最大的全断面隧道掘进机制造与应用市场,市场份额约为70%。在各个细分维度: 1)最大开挖直径维度,全球最大开挖直径设备为应用于中国香港屯门—赤鱲角接线工程的泥水平衡盾构,开挖直径为17.63 m。2)最小开挖直径维度,全球最小开挖直径设备为应用于墨尔本西门隧道项目的顶管机,开挖直径为0.4 m;在盾构/TBM机型中,全球最小开挖直径设备为应用于日本一文字污水管道工程的土压平衡盾构,开挖直径为1.22 m。3)掘进坡度维度,全球最大坡度设备为应用于中国平江抽水蓄能项目的TBM,掘进坡度为50°。4)掘进埋深维度,全球最大埋深设备为应用于瑞士圣哥达基线隧道的TBM,埋深2 450 m。5)独头连续掘进距离维度,全球最大连续掘进距离设备为应用于英国伍兹史密斯矿运输隧道的TBM,独头连续掘进距离30.335 km。6)转弯半径维度,全球最小转弯半径设备为应用于日本丰中新免干线的土压平衡盾构,转弯半径为10.5 m。7)进尺量维度,全球最高日进尺设备为应用于泰国曼谷天然气管道项目的顶管机,日进尺为202 m; 全球最高月进尺设备为应用于美国芝加哥小卡卢梅特支隧道的TBM,月进尺为2 163 m。根据数据可知,当前在各细分领域国外品牌总体依然保持领先,我国在最大掘进坡度和最高日进尺维度领先,整体已由“跟跑”转向部分“领跑”。未来将有更多的世界级超级地下工程被提出,全断面隧道掘进机将朝着智能化、绿色化、适应极端工况的方向加速发展。

关键词: 全断面隧道掘进机, 数据统计, 土压平衡盾构, 泥水平衡盾构, TBM, 顶管机, 开挖直径, 转弯半径

Abstract: Based on industry statistics and engineering case data, this analysis focuses on the total production, inventory, and market landscape of global full-face tunnel boring machines (TBMs) by the end of 2024, including major models such as earth pressure balance (EPB) shields, slurry balance shields, TBMs, and pipe jacking machines. It specifically examines typical cases in six dimensions: diameter, gradient, burial depth, continuous tunneling distance, turning radius, and footage. The results indicate that China has now become the world’s largest market for the manufacturing and application of full-face TBMs, with a market share of approximately 70%. In various sub-dimensions: (1) maximum excavation diameter: the world’s largest diameter machine is the EPB shield applied to the Tuen Mun-Chek Lap Kok Link Project in Hong Kong, China, with an excavation diameter of 17.63 m; (2) minimum excavation diameter: the world’s smallest diameter machine is the pipe jacking machine applied to the West Gate Tunnel Project in Melbourne, with an excavation diameter of 0.4 m. Among shield/TBM models, the smallest global excavation diameter is 1.22 m, achieved by an EPB shield used for the Ichimonji Sewerage Pipeline Project in Japan; (3) tunneling gradient: the world’s largest gradient machine is the TBM applied to the Pingjiang Pumped Storage Project in China, with a tunneling gradient of 50°; (4) burial depth: the world’s largest burial depth machine is the TBM applied to the Gotthard Base Tunnel in Switzerland, with a burial depth of 2 450 m; (5) continuous dead-end tunneling distance: the world’s largest continuous tunneling distance machine is the TBM applied to the Woods Smith Mine Transport Tunnel in the UK, with a continuous dead-end tunneling distance of 30.335 km; (6) turning radius: the world’s smallest turning radius machine is the EPB shield applied to the Toyonaka-Shinmen Trunk Line in Japan, with a turning radius of 10.5 m; (7) footage: the world’s highest daily footage machine is the pipe jacking machine applied to the Bangkok Natural Gas Pipeline Project in Thailand, with a daily footage of 202 m. The world’s highest monthly footage machine is the TBM applied to the Little Calumet Branch Tunnel in Chicago, USA, with a monthly footage of 2 163 m. According to the data, foreign brands generally maintain a leading position in various sub-fields at present, while China leads in the maximum tunneling gradient and highest daily footage dimensions, having shifted from “following” to “leading” position in some dimensions. In the future, more world-class super underground projects will be proposed, and the full-face TBMs will accelerate their development towards intelligence, green technology, and adaptability to extreme working conditions.

Key words: full-face tunnel boring machine, data statistics, earth pressure balance shield, slurry shield, tunnel boring machine, pipe jacking machine, excavation diameter, turning radius