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Predictive model for the surface settlement caused by the excavation of twin tunnels

机译:双隧道挖掘引起的表面沉降预测模型

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摘要

It is of great difficulty to accurately predict the stratum deformation caused by double-track or twin-tunnel construction because of the complex coupled interaction of the two tunnels. Although green-field ground movements can be well fitted using established empirical methods, the disturbance caused by the excavation of the first tunnel is expected to affect the soil deformation close to the second tunnel. Due to the lack of consideration of the influence of secondary disturbances, the computed results of conventional prediction methods often lead to large errors when compared to measured results. Based on the Peck formula, this paper first clarifies the influence mechanism of twin-tunnel excavation. The model is then calibrated using field data from a twintunnel excavation in Wuhan city. With the concern of disturbance due to prior tunnel excavation, the disturbance correction factor eta(x) is introduced to deduce a prediction formula for the ground surface deformation caused by twin-tunnel construction. Finally, the proposed theory is verified based on the field measurements of a practical case study of the Changsha Metro Line 2 Project.
机译:由于两个隧道的复杂耦合相互作用,精确地预测由双轨或双隧道结构引起的层变形很困难。尽管使用建立的经验方法可以充分拟合绿场接地运动,但是预期由第一隧道的挖掘引起的干扰会影响靠近第二隧道的土壤变形。由于缺乏对二次扰动的影响,传统预测方法的计算结果通常会导致与测量结果相比的大误差。基于Peck公式,本文首先阐明了双隧道挖掘的影响机制。然后使用来自武汉市的Twintunnel挖掘的现场数据校准该模型。随着由于先前隧道挖掘引起的扰动的关注,引入了干扰校正因子ETA(X)以推导出由双隧道结构引起的地面变形的预测公式。最后,拟议的理论是基于长沙地铁2号项目实际案例研究的现场测量来验证。

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