首页> 外文期刊>Advances in civil engineering >Risk Mitigation and Construction Control for Effective Underwater Recovery of an EPB Shield: A Case Study of the First Metro Tunnel in Tel Aviv
【24h】

Risk Mitigation and Construction Control for Effective Underwater Recovery of an EPB Shield: A Case Study of the First Metro Tunnel in Tel Aviv

机译:EPB盾牌有效水下恢复的风险减缓与施工控制 - 以特拉维夫第一个地铁隧道为例

获取原文
       

摘要

Shield recovery in water-rich sand strata is a challenging issue in the field of shield tunnel engineering, especially when the end of the shaft cannot be reinforced by jet grouting or freezing or when the shield cannot be supported with a steel sleeve. Therefore, it is important to develop an effective recovery approach and adopt suitable techniques to control the risks. In this study, a new method based on filling the receiving shaft with water is proposed for the underwater recovery of an earth pressure balance (EPB) shield with zero end reinforcement from a metro tunnel in Tel Aviv, Israel. Several additional techniques are used to ensure safe recovery of the shield, including the design of a concrete cradle, drilling of pressure relief holes, control of excavation parameters, screw conveyor sealing, portal sealing, tail sealing, and grouting. Furthermore, according to the actual situation on site, filling the shaft with water to 1?m above the water level in the strata can prevent the fine sand from percolating into the shaft. Before the cutterhead approaches the underground diaphragm wall, the driving attitude should be strictly controlled, and the edge hob should be inspected for wear. The necessary thrust of shield tunneling in the underground diaphragm wall and shaft is calculated theoretically. In order to ensure the deformation control of the underground diaphragm wall and the smooth tunneling of the shield, the thrust of the shield excavating the underground diaphragm wall will not be larger than 12 000?kN, and the penetration degree will be limited to 3?mm/r. Qualitative observations and measurements of surface subsidence in the metro tunnel indicate that these risk mitigation techniques are effective and suitable for the underwater recovery of EPB shields in water-rich sand strata.
机译:避难在水中的砂层中的屏蔽恢复是盾构隧道工程领域的一个具有挑战性的问题,特别是当轴的末端不能通过喷射灌浆或冻结加固或者当钢套筒不支撑屏蔽时。因此,重要的是开发一种有效的恢复方法,采用合适的技术来控制风险。在本研究中,提出了一种基于填充接收轴的新方法,用于零端压力平衡(EPB)屏蔽的水下恢复,以色列特拉维夫的地铁隧道零端加强。几种额外的技术用于确保屏蔽的安全恢复,包括混凝土摇篮的设计,减压孔钻孔,挖掘参数控制,螺旋输送机密封,门锁,尾部密封和灌浆。此外,根据现场的实际情况,将轴用水填充到地层的水位上方的1·m可以防止细砂渗透到轴上。在切割机接近地下隔膜墙之前,应严格控制驾驶态度,应检查边缘滚刀是否磨损。理论上计算了地下隔膜墙和轴中的盾构隧道的必要推力。为了确保地下隔膜壁的变形控制和屏蔽的光滑隧道,挖掘地下隔膜壁的屏蔽的推力将不会大于12 000?kn,并且渗透程度将限制为3? mm / r。地铁隧道中表面沉降的定性观测和测量表明,这些风险缓解技术是有效的,适用于水性砂层中的EPB屏蔽的水下回收。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号