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Deformation Rule and Mechanical Characteristics of Temporary Support in Soil Tunnel Constructed by Sequential Excavation Method

机译:顺序开挖法施工土工隧洞临时支护的变形规律及力学特性

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摘要

The temporary support of tunnel constructed through sequential excavation method is considered one key point because of its large deformation and complex force. The in-situ deformation of temporary support was monitored in two soil tunnels. Results show that the temporary support presents "convergence-expansion-stability" regularity in the horizontal direction and "settlement-uplift-stability" regularity in the vertical direction. Finite element numerical simulation method was used to obtain the displacement and stress of the temporary support based on the stratum geological parameters at tunnel site. Compared with the field test results, the numerical simulation values have differences, but the deformation rules are consistent. The temporary support bear not only axial force, but also the frequently variable bending moments and shear force. Combined the results of field test and numerical simulation, we proposed that the longitudinal connection reinforcement between each steel frame and steel fabric should be set in the temporary support. Alternatively, steel fiber-reinforced shotcrete could be used in the temporary support when necessary.
机译:序贯开挖法施工的隧道临时支护由于变形大,受力复杂,被认为是重点之一。在两个土质隧道中监测了临时支撑的原位变形。结果表明,临时支撑在水平方向呈现“收敛-扩展-稳定”规律,在垂直方向呈现“沉降-抬升-稳定”规律。根据隧道现场地层地质参数,采用有限元数值模拟方法获得临时支护的位移和应力。与现场试验结果相比,数值模拟值存在差异,但变形规律是一致的。临时支撑不仅承受轴向力,而且还承受经常变化的弯曲力矩和剪切力。结合现场试验和数值模拟的结果,我们建议在每个钢框架和钢织物之间的纵向连接加强应设置在临时支撑中。另外,必要时可以在临时支座中使用钢纤维增强喷射混凝土。

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