盾构隧道接缝变形作用下密封垫防水性能退化规律研究

Study on Degradation Law of Waterproof Performance of Gasket Under Joint Deformation in Shield Tunnels

  • 摘要: 为保证城市盾构隧道的安全运营,采用理论分析和数值模拟对接缝变形作用下盾构隧道密封垫防水性能的退化规律开展研究;构建盾构隧道密封垫4阶段防水失效模型,提出表征防水性能3个评价指标;在此基础上,利用数值模拟分析接缝变形对密封垫防水性能的影响规律。结果表明:密封垫界面在压缩状态下呈现“波纹板”形态,接触压力在波峰和边缘处形成极大值;构建的评价指标可从渗漏通道、界面受力水平、安全储备3个维度识别界面防水失效状态,较单一评价指标系统性和适用性更强;接缝变形组合时出现协同恶化效应,且接缝张开是防水性能非线性退化的主导因素;接缝张开与纵、横向错动耦合时,防水性能退化最严重。

     

    Abstract: To ensure the safe operation of shield tunnels, the degradation law of the waterproof performance of gaskets in shield tunnels under joint deformation was investigated using theoretical analysis and numerical simulation. A four-stage waterproof failure model for shield tunnel gaskets was established, and three evaluation indexes for characterizing waterproof performance were proposed. On this basis, the influence law of joint deformation on the waterproof performance of gaskets was analyzed via numerical simulation. The results show that the gasket interface exhibits a corrugated plate morphology under compression, with maximum contact pressures occurring at the crests and edges of the corrugations. The proposed evaluation indices can identify the waterproof failure state of the interface from three dimensions: leakage channel, interface stress level, and safety reserve, which exhibit stronger systematicity and applicability than single evaluation indices. A synergistic deterioration effect is observed under combined joint deformation, and joint opening is the dominant factor leading to the nonlinear degradation of waterproof performance. The most severe degradation of waterproof performance occurs under the coupling of joint opening with longitudinal and transverse dislocation.

     

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