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隧道建设(中英文) ›› 2026, Vol. 46 ›› Issue (S1): 91-102.DOI: 10.3973/j.issn.2096-4498.2026.S1.007

• 研究与探索 • 上一篇    下一篇

复杂水文地质条件下装配式机械法竖井下沉阻力演化及水位波动作用机制

章邦超, 赵汉亮, 马保松, 黄胜, 丁耀胜   

  1. (中山大学土木工程学院, 广东 珠海 519082)
  • 出版日期:2026-06-30 发布日期:2026-06-30
  • 作者简介:章邦超(1982—),男,安徽芜湖人,2006年毕业于安徽理工大学,土木工程专业,本科,正高级工程师,现从事城市轨道交通技术管理工作。E-mail: 154151053@qq.com。

Evolution of Sinking Resistance and Fluid-Structure Interaction Mechanisms of Prefabricated Shafts Under Complex Hydrogeological Conditions

ZHANG Bangchao, ZHAO Hanliang, MA Baosong, HUANG Sheng, DING Yaosheng   

  1. (School of Civil Engineering, Sun Yat-sen University, Zhuhai 519082, Guangdong, China)
  • Online:2026-06-30 Published:2026-06-30

摘要: 针对复杂水文地质条件下装配式机械法竖井下沉过程中端阻力波动大、环向偏压易加剧且成因难以判明的问题,依托广州东至花都天贵城际线路某装配式竖井工程,构建刃脚环向8点接触压力、管片钢筋应力及地下水位/孔隙水压力多源监测数据库,采用平均接触压力、变异系数、压力-应力回归及时序对比等方法,分析下沉阻力的阶段演化、环向受力差异及水位扰动影响。结果表明: 1)刃脚接触压力整体上随埋深加大而升高,并呈明显分段特征。2)受强风化花岗岩及孤石影响,刃脚-地层接触压力峰值和离散性显著增大,局部出现长尾分布。3)随着深度增加,环向受力由近似均匀逐步转为局部集中,变异系数阶段性突升,表明偏压明显增强。4)刃脚接触压力与0环钢筋应力在空间分布上具有较强对应关系,二者整体呈正相关,少量0环钢筋高应力异常点主要出现在阻力突增和偏压放大区段。5)地下水位剧烈波动与刃脚接触压力异常在时间上基本吻合,说明水位变化可通过孔压消散滞后、有效应力调整及泥浆套稳定性变化影响侧壁摩阻力与刃脚端阻力的分配。平均接触压力、变异系数及压力-应力异常可作为识别端阻力突变、偏压发展和局部内力异常的监测指标。

关键词: 装配式竖井, 下沉阻力, 刃脚接触压力, 环向偏压, 地下水位波动, 渗流-应力影响

Abstract: During the sinking of prefabricated shafts constructed by the mechanical method under complex hydrogeological conditions, end-resistance fluctuations are large, and circumferential eccentric loading is aggravated, these cause difficulty in identifying their underlying causes. To address these challenge, a case study is conducted on a prefabricated shaft project on the Guangzhou East Railway Station-Huadu Tiangui Station Intercity Railway, and a multi-source monitoring dataset is established, including eight-point circumferential contact pressure at the cutting edge, reinforcement stress in the lining segments, and groundwater level/pore-water pressure. Methods such as mean contact pressure, coefficient of variation, pressure-stress regression, and time-series comparison are employed to investigate the staged evolution of sinking resistance, circumferential load nonuniformity, and the influence of groundwater fluctuations. Results are obtained as follows: (1) The cutting-edge contact pressure generally increases with burial depth and exhibits clear stage-wise characteristics. (2) Under the influence of strongly weathered granite and isolated boulders, both the pressure peaks and dispersion increase markedly, and local long-tail distributions appear. With increasing depth, the circumferential load pattern gradually changes from nearly uniform distribution to local concentration, and the coefficient of variation rises abruptly at certain stages, indicating a pronounced increase in eccentric loading. The cutting-edge contact pressure shows a strong spatial correspondence with the reinforcement stress of Ring 0, and the two are positively correlated overall. A small number of high-stress anomalies primarily occur in zones where resistance surges and eccentric loading intensify. Pronounced groundwater-level fluctuations are broadly consistent in time with pressure anomalies, indicating that water-level changes can alter the distribution between sidewall friction and end resistance through delayed pore-pressure dissipation, effective-stress adjustment, and changes in the stability of the slurry jacket. Mean contact pressure, coefficient of variation, and pressure-stress anomalies can therefore be used as monitoring indicators for identifying sudden changes in end resistance, the development of eccentric loading, and local internal-force anomalies.

Key words: prefabricated shaft, sinking resistance, cutting-edge contact pressure, circumferential eccentric loading, groundwater-level fluctuation, seepage-stress effect