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Reducing the Tunnelling Effect on Adjacent Pile Foundations

机译:降低相邻桩基础的隧道效应

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Tunnel excavation may induce adverse effects on nearby existing structures/foundations in urban areas. Jet grouting is used as solution in the influenced area near or around the tunnel vicinity to reduce the induced stress and deformation of tunnelling process on nearby deep foundation. The objective of the present study is to numerically evaluate the nature of interaction between the employed tunnelling technologies; the nearby structures founded on deep foundation systems and grouted soil using 3D finite element idealization. Back analysis of The stability of El-Attabe Garage building due to the execution of the Greater Cairo Metro Line 3-Phase 1 is conducted in this paper to evaluate the capability of the proposed numerical model. Also, in the present study, a parametric study is conducted using a 3D finite element code to investigate the effect of the different grouting shapes such as jet grouting wall placed at or below tunnel springline, to reduce the tunnelling effect on adjacent pile. In addition, another shape of circular annuals grouting is investigated in this paper. Accordingly, the upper half and full annulus of soil region around the tunnel is grouted before tunneling process to enhance the soil properties and decrease the effect of tunneling. These grouting annuls have a same thickness and length as that of grouting wall used behind the pile. All of these schemes of grouting shapes are used to study their effect on reducing the pile response due to tunnelling process.
机译:隧道挖掘可能会对城市地区附近现有结构/基金会诱发不利影响。喷射灌浆用作隧道附近的受影响区域的溶液,以降低附近深基础的隧道过程的致力应力和变形。本研究的目的是在数值上评估采用隧道技术之间的相互作用的性质;附近的结构在深基础系统上建立和使用3D有限元理想化的灌浆土。本文进行了由于执行更大的开罗地铁3阶段1的执行导致EL-ATTABE车库建筑稳定性分析,以评估所提出的数值模型的能力。此外,在本研究中,使用3D有限元码进行参数研究,以研究不同的灌浆形状的效果,例如射流灌浆壁,放置在隧道弹簧线上或下方的喷射灌浆壁,以减少对相邻桩的隧道效应。此外,本文研究了另一种形状的圆形年度灌浆。因此,隧道周围的土壤区域的上半环和全环在隧道过程之前灌浆,以增强土壤性质并降低隧道的效果。这些灌浆随着桩背后的灌浆壁的厚度和长度具有相同的厚度和长度。所有这些灌浆形状的方案都用于研究它们对由于隧道过程引起的桩响应的影响。

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