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Interaction of longitudinal surface settlements for twin tunnels in shallow and soft soils: the case of Istanbul Metro

机译:浅软土中双隧道纵向地面沉降的相互作用:以伊斯坦布尔地铁为例

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摘要

Increasing demands on infrastructures increases the attention on shallow soft ground tunneling methods in urbanized areas. Especially, in metro tunnel excavations, it is important to control the surface settlements observed before and after excavation, which may cause damage to surface structures. To solve this problem, earth pressure balance machines (EPBMs) have widely been used throughout the world. This study focuses on surface settlement measurements, the interaction of twin tunnel surface settlement, and the relationship between shield parameters and surface settlement for parallel tunnels using EPBM shields in clay and sand soils. In this study, the tunnels were excavated using two EPBMs. The tunnels were 6.5 m in diameter, as twin tubes with a 14 m distance from center to center. The EPBM in the first tube followed about 100m behind the other tube. Segmental lining with 1.4m of length was employed as a final support. The results from this study showed that (1) the most important parameters for the maximum surface settlements are the face pressure and backfill; (2) in twin tunnel excavation with EPBM for longitudinal profile, the settlement rate reached its peak value when the shield came to the monitoring section and this peak value continued until the shield passed the monitoring section; (3) every shield affected the other tunnel's longitudinal surface settlement profile by approximately 35-36.8 %; (4) S_A, S_B and S_C values were found to be 38.0, 35.8 and 26.2 %, respectively for an EPBM, and (5) ensuring good construction quality is a very effective way to control face stability and minimize surface settlement.
机译:对基础设施的需求不断增加,越来越引起人们对城市化地区浅层软土地基隧道方法的关注。特别是在地铁隧道的开挖中,重要的是控制在开挖前后观察到的地面沉降,这可能会损坏地面结构。为了解决这个问题,土压平衡机(EPBM)已在世界范围内广泛使用。这项研究的重点是在粘土和砂土中使用EPBM盾构的平行隧道的地表沉降测量,双隧道地表沉降的相互作用以及盾构参数与地表沉降之间的关系。在这项研究中,使用两个EPBM开挖了隧道。隧道直径为6.5 m,是双管,中心距中心14 m。第一根管中的EPBM紧随另一根管后约100m。长度为1.4m的分段衬砌用作最终支撑。这项研究的结果表明:(1)最大表面沉降的最重要参数是面压力和回填量。 (2)在采用EPBM进行纵向纵剖面的双隧道开挖中,盾构到达监测段时沉降速率达到峰值,该峰值一直持续到盾构通过监测段为止。 (3)每个盾构影响另一条隧道的纵向地面沉降轮廓约35-36.8%; (4)对于EPBM,S_A,S_B和S_C值分别为38.0%,35.8和26.2%,并且(5)确保良好的施工质量是控制表面稳定性和最小化表面沉降的非常有效的方法。

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