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Investigation of ground surface settlement in twin tunnels driven with EPBM in urban area

机译:市区EPBM双隧洞地表沉降研究。

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Nowadays, with the increasing population of large cities, the need to expand public transportation, especially metro systems, is greatly increasing in urban areas. Therefore, excavation of new tunnels near the existing ones or other excavations located nearby has become inevitable. Excavation of such tunnels in urban areas should be done by considering the effects of these tunnels on buildings and other urban structures. Significant factors affecting interaction between tunnels, as well as the characteristics of surface settlement, are the existence of mixed ground (soil-rock) at tunnel faces or fault zones in the direction of tunnel excavation which have not been clearly investigated by researchers. These parameters have a great effect on the amount of maximum surface settlement and shape of surface settlement curve. Although several studies aim to analyse the interaction between newly excavated and existing tunnels and its effects on surface settlements, this subject certainly needs further investigation. This study mainly focuses on the effects of the interaction between twin tunnels mainly opened in fault zones and mixed ground on the basis of surface settlement measurements by using Earth Pressure Balance Machine (EPBM). Both numerical and empirical methods are used in this study. Observed data are used to test the validity of the results obtained from three-dimensional numerical modelling. The results from numerical methods were in good agreement with the real data. The results of this study reveal that the amount of maximum surface settlement and shape of surface settlement curve are strongly related to spacing between tunnels, fault zone thickness and type of tunnel face material. The interaction factor is almost zero when spacing is larger than 4D (D is tunnel diameter). Independent of fault zone thickness, the effects of the fault on longitudinal surface settlement continue 25 m from both sides of the fault centre.
机译:如今,随着大城市人口的增加,城市地区扩大公共交通,特别是地铁系统的需求正在大大增加。因此,在现有隧道附近开挖新隧道或在附近开挖其他隧道已成为必然。在城市地区开挖此类隧道时,应考虑这些隧道对建筑物和其他城市结构的影响。影响隧道之间相互作用以及地表沉降特征的重要因素是在隧道开挖方向上的隧道面或断层带上存在混合地面(土石),研究人员尚未对此进行调查。这些参数对最大表面沉降量和表面沉降曲线的形状有很大影响。尽管有几项研究旨在分析新开挖的隧道与现有隧道之间的相互作用及其对地表沉降的影响,但这个问题当然需要进一步研究。这项研究主要是在利用土压平衡机(EPBM)进行地表沉降测量的基础上,着重研究主要在断层带中打开的双隧道与混合地面之间相互作用的影响。在这项研究中使用数值和经验方法。观察到的数据用于测试从三维数值建模获得的结果的有效性。数值方法的结果与实际数据吻合良好。研究结果表明,最大表面沉降量和表面沉降曲线的形状与隧道间距,断层带厚度和隧道面板材料类型密切相关。当间距大于4D(D为隧道直径)时,相互作用因子几乎为零。与断层带厚度无关,断层对纵向表面沉降的影响从断层中心两侧持续25 m。

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