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Subway tunnels displacement analysis due to two different communication channels construction procedures

机译:两种不同通信渠道建设程序导致的地铁隧道位移分析

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摘要

Due to congestion in overground space, many underground structures have been built to facilitate communications between cities. These structures constructions will induce soil displacement, cities planning rearrangement, and sometimes are near to future buildings constructions. In some cases, communication channels should be built to allow the underground junction between the building and the subway station. Numerical simulation has been carried out to study the tunnel displacement behavior during construction stages. Two different procedures of the communication channel construction were also investigated. The results reliability were evaluated by monitoring six points displacement in the sheet pile walls after completion of the foundation pit. The results obtained were reasonably close to the monitoring results proven reasonably of the research ideas and the method scientificity. The results showed using sheet piles walls, and struts before soil excavation could reduce considerably the lateral displacement of the subway line during the excavation process and induce augmentation in the subway line vertical displacement. The lateral displacement effect of the walls thickness variation is much superior to the one provides by the struts cross-section and pile's diameter variations.
机译:由于地表空间的拥挤,已建造了许多地下结构以促进城市之间的通信。这些结构施工会导致土壤流离失所,城市规划会重新安排,有时还会靠近将来的建筑物施工。在某些情况下,应建立通信通道,以允许建筑物与地铁站之间的地下连接。已经进行了数值模拟以研究施工阶段的隧道位移行为。还研究了两种不同的通信渠道建设程序。通过监测基坑完成后板桩墙中的六点位移来评估结果的可靠性。获得的结果与研究思路和方法科学性合理证明的监测结果相当接近。结果表明,在开挖土壤之前使用板桩墙和支柱可以在开挖过程中大大减少地铁的横向位移,并引起地铁竖向位移的增加。壁厚变化的侧向位移效果要比支杆横截面和桩直径的变化要好得多。

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