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Ground surface settlement response to subway station construction activities using pile-beam-arch method

机译:使用桩梁法对地铁站建设活动进行地面沉降响应

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摘要

A pile-beam-arch method is a shallow tunneling method suitable for constructing urban subway stations with dense surface traffic. The main construction process can be simplified into four stages: excavation of pilot tunnels, installation of piles and beams, installation of arches, and excavation of soil inside the subway station. This study uses numerical calculations to investigate the development law of ground surface settlement during the construction of subway stations. The results indicate that surface settlement gradually increases in the first three stages and rebounds after the fourth stage. Further, pilot tunnel excavation and arch installation are identified as key stages for controlling the surface settlement. Based on these facts, the effects of the sequence of pilot tunnel excavation and the spacing and cross-sectional area of the columns on the surface settlement are studied. The results show that the sequence of pilot tunnel excavation has a significant effect on the development of the surface settlement trough. Further, column spacing and surface settlement exhibit a linear relationship, wherein a shorter spacing leading to low surface settlement. The cross-sectional area of the column exhibits a nonlinear relationship with the surface settlement; the surface settlement is stable when the cross-sectional dimensions are 1.5. x 1.5 m. The Peck formula and stochastic medium theory are used to predict the surface settlement in the pilot tunnel excavation stage. The results are 30%-50% higher than that in the numerical calculation, which indicates their safety and conservatism. The results of this study provide a reference for the selection of construction parameters and the prediction of surface settlement in similar projects.
机译:桩梁拱法是一种浅隧道方法,适用于构建茂密的表面交通的城市地铁站。主要施工过程可以简化为四个阶段:飞行员隧道的挖掘,桩和梁的安装,拱门安装以及地铁站内的土壤的挖掘。该研究使用数值计算来研究地铁站建造过程中地面沉降的发展规律。结果表明,表面沉降在前三个阶段逐渐增加,第四阶段后的篮板。此外,导频隧道挖掘和拱形安装被识别为用于控制表面沉降的关键阶段。基于这些事实,研究了先导隧道挖掘序列的效果和表面沉降上柱的间隔和横截面积。结果表明,飞行员隧道挖掘序列对表面沉降槽的发展具有显着影响。此外,柱间距和表面沉降具有线性关系,其中较短的间距导致低表面沉降。柱的横截面积与表面沉降具有非线性关系;当横截面尺寸为1.5时,表面沉降是稳定的。 x 1.5米。佩克公式和随机介质理论用于预测导频隧道挖掘阶段的表面沉降。结果比数值计算的结果高30%-50%,这表明了它们的安全和保守主义。本研究的结果为施工参数提供了参考,以及类似项目的表面沉降预测。

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