掘进参数调控稳定性对软土盾构隧道诱发地表沉降的影响分析
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1.武汉大学建筑土木工程学院;2.中国建筑第五工程局有限公司

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国家自然科学基金项目(面上项目,重点项目,重大项目)


Influence of Control Stability of Construction Parameters on Surface Settlement Induced by Shield Tunneling in Soft Soil
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1.School of Civil Engineering Wuhan University;2.China Construction Fifth Engineering Division Co.. Ltd

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    摘要:

    盾构隧道开挖诱发地表沉降的研究多数将掘进参数视为确定值,忽略了其在调控过程中变异性的影响。为了研究盾构掘进参数调控稳定性与地表沉降的关系,以武汉地铁12号线某盾构隧道区间工程为依托,建立了盾构隧道开挖全过程的三维数值模型,探究了土仓压力、超挖间隙和注浆压力的变异水平对地表沉降的影响规律,重点分析了不同掘进参数的影响区域。结果表明:盾构施工过程中掘进参数的调控稳定性对地表沉降有重要影响,地表沉降的离散程度与掘进参数变异水平呈正相关;不确定性地表沉降受主要影响区域内掘进参数调控稳定性的影响。基于数值模拟结果,获得了盾构掘进参数的变异系数控制标准。研究结果为盾构隧道工程的施工调控和风险评估提供了参考。

    Abstract:

    In the researches on surface settlement induced by shield tunneling, most of the construction parameters are regarded as deterministic values, ignoring their variability during the control process. This paper aims to investigate the relationship between the control stability of construction parameters control and the surface settlement caused by shield tunneling. Based on the shield tunneling project of a certain section of Wuhan Metro Line 2, a three-dimensional numerical model is established to simulate the whole process of shield tunneling. The influence of the variation level of chamber earth pressure, over-excavation gap, and grouting pressure on the surface settlement is investigated. An effort is also made to gain insight into the influence area of different construction parameters. The results show that the control stability of construction parameters control during the shield tunneling process has a great influence on the surface settlement, and the dispersion degree of surface settlement is positively correlated with the variation level of construction parameters. Moreover, the uncertain surface settlement is affected by the control stability of construction parameters within the primary impact area. According to the numerical analyses, the control standards for the coefficient of variation of the construction parameters were obtained. The research results provide a reference for the construction control and risk assessment of shield tunnel engineering.

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  • 收稿日期:2025-03-07
  • 最后修改日期:2025-04-07
  • 录用日期:2025-04-08
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