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Longitudinal Deformation of Deep Shield Tunnels Caused by Upper Load Reduction

机译:由上负载减少引起的深屏蔽隧道纵向变形

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摘要

Above-crossing excavations may cause uplift damages on existing shield tunnels. Therefore, to accurately calculate the deformation of shield tunnels is very necessary for geotechnical engineers. At present, the single-sided elastic foundation beam model is usually used in longitudinal deformation calculations for shield tunnels, which overestimates the uplift of deep shield tunnels. Because of the existence of the ground arch, deep shield tunnels are subjected to two-sided foundation reaction forces. Therefore, this paper proposes a partial missing double-sided elastic foundation beam model and the related fourth-order partial differential equations. In this model, the shield tunnel is subjected to double Winkler foundation springs and is simply considered a Euler–Bernoulli beam. A two-stage analysis method is used to solve the problem. First, the vertical unloading stress due to the above-crossing tunnelling at the tunnel location is calculated through Mindlin’s solution. Second, the deformation response of the beam subjected to an unloading stress is calculated by the finite difference method. Two engineering cases are used to verify the research. The results indicate that the proposed model is more accurate than traditional models in predicting the maximum uplift value, which is basically consistent with the observations. Due to the existence of segment staggering, the longitudinal influence range of the calculation by two models is larger than the actual measurement.
机译:过境挖掘可能导致现有屏蔽隧道上的升级损坏。因此,为了准确计算岩壁工程师的屏蔽隧道的变形是非常必要的。目前,单侧弹性基础梁模型通常用于纵向变形计算,用于屏蔽隧道,这高估了深屏蔽隧道的隆起。由于存在地面拱形,深屏蔽隧道受到双面基础反应力。因此,本文提出了一种部分缺失的双面弹性基梁模型和相关的四阶偏微分方程。在该模型中,屏蔽隧道经受双挤压基金会弹簧,并简单地被认为是欧拉伯尔努利梁。两阶段分析方法用于解决问题。首先,通过Mindlin的解决方案计算由于隧道位置的上外隧道引起的垂直卸载应力。其次,通过有限差分法计算经受卸载应力的光束的变形响应。两个工程案例用于验证研究。结果表明,所提出的模型比传统模型更准确地预测最大隆起值,这与观察结果一致。由于段交错的存在,通过两种模型计算的纵向影响范围大于实际测量。

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