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Research on the Law and Prediction of Ground Settlement by Shield Tunneling Construction in Ningbo Rail Transit

机译:宁波轨道交通盾构隧道施工地面沉降的法律与预测研究

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摘要

Ground settlement laws and its control measures attract comprehensive attention in urban rail transit construction, particularly in soft soil area with shield tunneling method. Phase 1 of No.1 rail transit project in Ningbo is constructed by earth pressure balance (EPB) tunneling methods. In this paper, the horizontal ground settlement caused by single tunnel construction is studied by site measurement results. Correlation analysis of tunnel depth, grouting quantity, cover earth thickness, construction parameters and maximum settlement value is conducted. In the end, measurement data are linear fitted by least square method. Compared Peck formula with the result, the parameter selection and its applicability in Ningbo district are discussed. The research shows that the maximum width value of horizontal influence area can be up to 60 meters owing to the soft soil layer. Widths of settlement tank have mostly ranged between 15 and 20 meters. The maximum surface settlement has great linear relationship with grouting quantity, driving speed of shield machine and torque of cutter. But the depth of the tunnel has weak interaction with maximum ground settlement. Abovementioned research findings can provide technical support and theoretical guidance for the following rail transit construction in Ningbo.
机译:地面结算法及其控制措施引起了城市轨道交通施工的全面关注,特别是盾构隧道法的软土区。宁波中的No.1轨道交通项目的第1阶段由地球压力平衡(EPB)隧道方法构建。在本文中,通过现场测量结果研究了单隧道施工引起的水平接地沉降。隧道深度,灌浆量,覆盖地球厚度,施​​工参数和最大沉降值的相关性分析。最后,测量数据是由最小二乘法安装的线性。将Peck配方与结果进行了比较,讨论了参数选择及其在宁波地区的适用性。研究表明,由于软土层,水平影响面积的最大宽度值可达60米。沉降罐的宽度主要在15到20米之间。最大表面沉降具有与灌浆量的线性关系,屏蔽机的驱动速度和切割器的扭矩。但隧道的深度具有薄弱的与最大地面沉降相互作用。上述研究结果可以为宁波提供以下轨道交通施工的技术支持和理论指导。

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