双线盾构时序近接桥梁桩基施工的透明土模型试验研究OA
Study of a transparent soil model test on the sequential approach construction of double-line shield tunnels adjacent to bridge piles
针对双线盾构时序近接既有桥梁桩基施工时桩-土变形机理不清,以及传统模型试验研究方法难以实现土体内部变形的可视化观测的难题,本文融合透明土模型试验与粒子图像测速技术(PIV),研究了双线盾构时序掘进过程中隧道-桩基-土体之间的动态相互作用.结果表明:相较于单线隧道,双线盾构施工时地层沉降曲线呈现出"V-W"非对称的沉降变形演化规律;后行隧道施工所引起的土体横向变形相较于其竖向变形更为显著.此外,既有桥梁桩基及其周边土体的变形具有明显滞后于盾构掘进的特点,即盾构驶离桩基横断面后约 0.5~1.0 倍洞径时土体沉降与桩基倾斜均出现最大增量值.本文研究结果可为同类工程的施工风险控制与结构保护提供理论依据.
[Objective]During the sequential excavation of the double-line shield tunnel near the existing bridge pile foundation,the deformation mechanism of the interaction between the pile,soil,and tunnel is still not well understood.Moreover,the traditional model testing method is incapable of directly displaying the deformation of the internal soil,which hinders the accurate interpretation of the influence mechanism of the pile foundation during shield construction and the effective risk control.To solve these problems,this study aims to investigate the dynamic interaction between the tunnel,pile foundation,and soil under the sequential shield construction conditions.[Methods]Based on the actual engineering case of Chongqing Rail Transit Line 15,a transparent soil model test with a geometric similarity ratio of 1:200 was established and combined with particle image velocimetry(PIV)technology to study this issue.In the experiment,the sequential excavation process of the double-line shield tunnel near the bridge pile foundation was simulated,and the displacement field of the soil was captured and analyzed using high-speed imaging combined with the PIVlab software.[Results]The experimental results show that compared with the single-line tunnel construction,the settlement curve of the foundation during the double-line shield construction presents an asymmetric"V-W"type evolution pattern(where"V-type"refers to the symmetrical single-peak settlement pattern centered on the arch crown of the preceding tunnel after single-line shield excavation;"W-type"refers to the asymmetric double-peak settlement pattern formed by two settlement peaks at the arch crowns of the preceding and subsequent tunnels respectively,with relatively smaller settlement of the middle soil column after subsequent tunnel excavation).In addition,the response of the existing bridge piers and the surrounding soil occurs with a noticeable delay during shield advancement.The maximum increment of soil settlement and bridge pier inclination occurs when the shield machine advances to a position that is 0.5-1.0 times the tunnel diameter away from the bridge pier section.The sequence of settlement values for the characteristic points is as follows:the arch top of the subsequent tunnel,the middle soil column,and the arch top of the previous tunnel.[Conclusions]The findings of this study indicate that the deformation of the existing bridge piers and the surrounding soil lags behind the advancement of the shield.The most severe deformation stage occurs 0.5-1.0 times the tunnel diameter after the shield passes through the bridge pier section.The subsequent excavation will exacerbate the influence of the preceding tunnel on the deformation of the existing bridge pier.These findings establish a theoretical basis for the monitoring,risk management,and structural protection of similar engineering projects.
辛凯凯;郑相龙;程果;黄锋;李晓诚;杨永浩
中交二公局第四工程有限公司,河南 洛阳 471000重庆交通大学 土木工程学院,重庆 400074中交二公局第四工程有限公司,河南 洛阳 471000重庆交通大学 土木工程学院,重庆 400074中国交通建设股份有限公司 轨道交通分公司,北京 100088重庆交通大学 土木工程学院,重庆 400074
建筑与水利
盾构隧道透明土模型试验桥梁桩基PIV
shield tunneltransparent soilmodel testbridge pile foundationsparticle image velocimetry
《实验技术与管理》 2026 (7)
71-80,10
重庆市博士后研究项目(2023CQBSHTB3065)重庆交通大学研究生科研创新项目(CYS25508)
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