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隧道建设(中英文) ›› 2026, Vol. 46 ›› Issue (5): 1060-1072.DOI: 10.3973/j.issn.2096-4498.2026.05.013

• 规划与设计 • 上一篇    下一篇

河床冲刷作用下复合式双层衬砌盾构隧道结构受力规律——以崇太长江隧道工程为例

杨昊, 王乐明, 刘撞撞, 王朋乐, 李佳琪   

  1. (中国铁路设计集团有限公司, 天津 300000)
  • 出版日期:2026-05-20 发布日期:2026-05-27
  • 作者简介:杨昊(1990—),男,山东临沂人,2024年毕业于北京交通大学,土木工程专业,博士,工程师,现从事隧道工程技术设计与研究工作。 E-mail: yanghaobg@126.com。

Mechanical Mechanism of Composite Double-Layer Lining Shield TunnelStructures Under Riverbed Scouring: A Case Study of Chongtai Yangtze River Tunnel

YANG Hao, WANG Leming, LIU Zhuangzhuang, WANG Pengle, LI Jiaqi   

  1. (China Railway Design Corporation, Tianjin 300000, China)
  • Online:2026-05-20 Published:2026-05-27

摘要:

为探究水下超大直径复合式双层衬砌盾构隧道在内衬施作时机及河床冲刷作用下的双层衬砌力学响应机理,以沪渝蓉高铁崇太长江隧道为工程案例,采用荷载结构模型进行研究。研究表明: 1)施作内衬会使下半环管片的弯矩显著减小,而使上半环管片的弯矩增加,但基本不影响管片最大正弯矩和管片轴力,且产生的管片与内衬之间的径向接触应力较小,可忽略。2)内衬施作越早,地层稳定后内衬与管片之间的径向接触应力、内衬弯矩和轴力越大,建议以较晚施作内衬为宜。3)随着河床冲刷深度的增加,管片的内力和变形呈现出减小的趋势,内衬的内力呈现出增加的趋势,衬砌两侧拱腰处的地层抗力不断减小;当两侧拱腰处地层抗力大于0时,管片和内衬的内力和变形随着冲刷深度的增加呈线性变化;当地层抗力减小至0时,管片与内衬的内力和变形特征发生显著变化,从而改变了原本的线性变化规律;地层抗力为0后,随着冲刷深度的进一步增加,管片和内衬的内力和变形虽仍接近线性变化,但其变化幅度显著降低。

关键词: 盾构隧道, 复合式双层衬砌, 河床冲刷, 内衬施作时机, 有限元分析

Abstract:

This study investigates the mechanical-response mechanism of double-layer linings in an underwater large-diameter composite double-layer shield tunnel on the Chongtai Yangtze River Tunnel of the Shanghai-Chongqing-Chengdu High-Speed Railway, China. The analysis employs a load-structure model to study the layer lining responses under different inner-lining construction timings and riverbed scouring actions. Main findings are as follows: (1) Inner-lining construction markedly reduces and increases the bending moment of the lower and upper halves of the segmental lining, respectively. It has minimal effect on the maximum positive bending moment and axial force of the segment and the induced radialcontact stress between the segment and the inner lining is negligible. (2) Earlier construction of the inner lining should be delayed to reduce radial-contact stresses, bending moments, and axial forces after ground stabilization. (3) As the riverbed scouring depth increases, the internal forces and deformations decrease in the segment and increase in the inner lining, accompanied by a continuous reduction of ground resistance at the arch waist. While the arch waist resistance remains greater than zero, the internal forces and deformations of the segment and inner lining vary linearly with scouring depth. Once the resistance reduces to zero, the linear trend is broken by dramatic changes in the mechanical responses of the segment and inner lining. Quasilinear variations, but with a markedly reduced amplitude, persist with further scouring. 

Key words: shield tunnel, composite double-layer lining, riverbed scouring action, secondary lining construction timing, finite element analysis