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隧道建设(中英文) ›› 2023, Vol. 43 ›› Issue (2): 285-295.DOI: 10.3973/j.issn.2096-4498.2023.02.010

• 研究与探索 • 上一篇    下一篇

旁侧基坑开挖卸载工况下槽钢加固盾构管片的加固效果研究

王钦1, 2, 魏纲1, 3, 4, *, 章丽莎1, 杨仲轩2   

  1. (1. 浙大城市学院土木工程系, 浙江 杭州 310015 2. 浙江大学建筑工程学院, 浙江 杭州 310058; 3. 浙江省城市盾构隧道安全建造与智能养护重点实验室, 浙江 杭州 310015;  4. 城市基础设施智能化浙江省工程研究中心, 浙江 杭州 310015)
  • 出版日期:2023-02-20 发布日期:2023-03-22
  • 作者简介:王钦(1998—),男,江西九江人,浙江大学土木水利专业在读硕士,研究方向为盾构隧道加固。E-mail: 22012201@zju.edu.cn。*通信作者: 魏纲, E-mail: weig@zucc.edu.cn。

Reinforcement Effect of USteel Reinforced Shield Segment Under Excavation Unloading of Side Foundation Pit

WANG Qin1, 2, WEI Gang1, 3, 4, *, ZHANG Lisha1, YANG Zhongxuan2   

  1. (1.Department of Civil Engineering,Hangzhou City University,Hangzhou 310015,Zhejiang,China;2.College of Civil Engineering and Architecture,Zhejiang University,Hangzhou 310058,Zhejiang,China;3.Key Laboratory of Safe Construction and Intelligent Maintenance for Urban Shield Tunnels of Zhejiang Province, Hangzhou 310015,Zhejiang,China;4.Zhejiang Engineering Research Center of Intelligent Urban Infrastructure,Hangzhou 310015,Zhejiang,China)
  • Online:2023-02-20 Published:2023-03-22

摘要: 为解决日益增长的盾构隧道修复治理问题,丰富现有隧道管片的加固体系,针对已有的槽钢加固中的不足开展槽钢加固盾构管片截面的有限元研究,通过MIDAS GTS NX有限元软件建立精细三维管片模型,并将模拟结果与足尺试验结果对比验证,然后开展槽钢环数、拼装形式、加固形式等影响因素的研究,旨在更全面地认识旁侧基坑开挖卸载工况下槽钢加固管片的受力变形性能和加固效果。研究结果表明: 1)4环槽钢加固可有效限制管片的收敛变形并减小螺栓主应力; 2)错缝拼装形式下管片的顶底收敛变形和螺栓应力在槽钢加固前后均呈现小于通缝拼装管片的特点; 3)槽钢最大主应力主要出现在顶部、腰部和200°~220°过渡段,可对这些部位采取局部加强措施; 4)槽钢-钢板组合加固是一种可靠的加固方式,对管片顶底收敛变形的加固效果明显,最大加固效率可以达到45.8%且经济性良好。

关键词: 盾构管片, 有限元模拟, 槽钢加固, 卸载工况, 加固效果

Abstract:  The repair and governance of shield tunnels are widely common nowadays. Hence, it is essential to improve the reinforcement system of the tunnel segments. In this study, the deficiencies in the existing Usteel reinforcement are presented, and a finite element study of the crosssection of Usteel reinforced shield tunnel segment is conducted. The MIDAS GTS NX finite element software is employed to establish a fine threedimensional segment model, and the simulation results are compared with the fullscale test results. In addition, the influencing factors, such as the number of Usteel rings, assembly form, and reinforcement form, are examined to investigate the mechanical deformation performance and reinforcement effect of Usteel reinforced segments under excavation unloading of the side foundation pit. The research results reveal the following: (1) The fourring Usteel reinforcement minimizes the convergence deformation of segments and reduces the principal stress of bolts. (2) The topbottom convergence deformation and bolt stress of the segment under the staggered seam assembly form are smaller than those of the throughseam assembly before and after Usteel reinforcement. (3) The maximum principal stress of Usteel is mainly located at the top, waist, and 200°~220° transition section and it can be strengthened locally. (4) The combination reinforcement of Usteel and steel plate is found to be a reliable reinforcement method that has significant reinforcement effect on the convergence deformation of the top and bottom of the segment. The maximum reinforcement efficiency can reach 45.8% with a good economic benefit.

Key words: shield segment, finite element simulation, Usteel reinforcement, unloading condition, reinforcement effect