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Displacement Characteristics of an Urban Tunnel in Silty Soil by the Shallow Tunnelling Method

机译:浅隧道法在粉质土壤中城市隧道的位移特征

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The urban shallow tunnelling process in silty soil is easy to cause large displacement of surface and tunnel. Obviously, if the strata and the tunnel face are not treated by reasonable reinforcement method, instability and collapse phenomenon will be encountered during the tunnel excavation. There are a series of studies on construction methods of shallow tunnels, but these methods have limitations in silty soil. In this study, a comprehensive construction plan of the urban shallow tunnel in silty soil was proposed and applied to a case study in Fuzhou, Fujian Province in South China. The in situ monitoring tests and numerical simulation were employed to address displacement characteristics of surface and tunnel. Results indicated that the urban shallow tunnelling process could achieve good effect by dewatering of silty soil, reinforcing surface by vertical jet grouting piles, and advanced small pipes and circumferential grouting in the tunnel face; surface settlement during dewatering process accounted for about 30% of total surface settlement in silty soil; the excavation of the top heading, the middle, and lower benches had great effect on displacement of surface and tunnel for three-bench seven-step excavation method in silty soil; surface settlement troughs in silty soil were deeper and wider; lock-feet bolts had good effect on restricting horizontal convergence; and ratio of total crown settlement and total horizontal convergence was in range of 1.43~1.59 when b/h was 0.88 in silty soil. The construction plan proposed in this paper is helpful for further study of shallow tunnel tunnelling process in silty soil.
机译:粉质土壤中的城市浅隧道过程易于引起大量的表面和隧道。显然,如果地层和隧道面不受合理的增强方法处理,在隧道挖掘过程中将遇到不稳定性和塌陷现象。浅隧道施工方法有一套研究,但这些方法在粉质土壤中有局限性。在这项研究中,提出了粉质土壤中城市浅隧道的全面建设计划,并申请福建省福州南方福州案例研究。采用原位监测测试和数值模拟来解决表面和隧道的位移特性。结果表明,城市浅隧道过程可通过灌浆灌浆桩脱水,通过垂直喷射灌浆桩进行脱水,以及隧道面上先进的小管和周向灌浆的良好效果;脱水过程中的表面沉降占粉质土壤总表面沉降的约30%;顶部标题,中间和较低长凳的挖掘对粉质土壤中的三个台阶七步挖掘方法的表面和隧道的位移有很大效果;粉质土壤中的表面沉降槽更深,更宽;锁脚螺栓对限制水平收敛有良好影响;当B / H在粉质土壤中为0.88时,总冠沉降和总水平收敛的比例为1.43〜1.59。本文提出的建设计划有助于进一步研究粉质土壤中的浅隧道隧道过程。

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