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An in-tunnel grouting protection method for excavating twin tunnels beneath an existing tunnel

机译:在既有隧道下方开挖双隧道的隧道内注浆保护方法

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A section of closely spaced twin tunnels at Shangmeilin station on Shenzhen metro line 9 was excavated by the shield tunneling method. Part of this section lies closely beneath the tunnel servicing Metro line 4. Due to restrictions on ground surface to control the extra settlement of the existing tunnel in the area, an in-tunnel grouting protection method was adopted in combination with the shield method. This method greatly reduced the effect on the existing tunnels when building the twin tunnels underneath. The settlement of and stress on the existing tunnels associated with the construction of the new tunnels were systematically monitored. Because of the twice under-crossing process, the excavation of twin tunnels had a superposed influence on the existing tunnel and surrounding soil. The behavior of the overlying tunnel was analyzed based on instrumentation records obtained from the project. The settlement profile of the existing structure displayed a "V" shape after the first under-crossing but a "W" shape after the second. The hoop stress of the existing tunnel induced by shield tunneling below had beneficial effects on the stress state of the tunnel structure. By contrast, the longitudinal stress exerts a bending moment on the existing tunnel, with a large tensile stress that had adverse effects on its structure. Based on the monitored data, three deformation modes are proposed to describe the behavior of the existing tunnel. In addition, the differences between the two under-crossing processes are discussed; both the ground loss ratio and width parameter of the settlement trough in the second profile were larger than those of the first profile due to the decrease in soil stability.
机译:深圳地铁9号线上梅林站近距离双隧道的一部分采用盾构法开挖。本节的一部分紧邻地铁4号线的隧道维修。由于地面上的限制以控制该地区现有隧道的额外沉降,因此采用了隧道内注浆保护方法和屏蔽方法。当在下面建造双隧道时,此方法大大降低了对现有隧道的影响。与新隧道的建设有关的现有隧道的沉降和应力得到了系统的监测。由于两次穿越过程,双隧道的开挖对现有隧道和周围土壤产生了叠加影响。根据从项目获得的仪器记录,分析了上覆隧道的行为。现有结构的沉降轮廓在第一个下划线之后显示为“ V”形,而在第二个下划线之后显示为“ W”形。下面的盾构隧道引起的既有隧道的环向应力对隧道结构的应力状态产生了有益的影响。相反,纵向应力在现有隧道上施加弯矩,而较大的拉伸应力对其结构产生不利影响。基于监测数据,提出了三种变形模式来描述现有隧道的行为。此外,还讨论了两个交叉过程之间的差异。由于土壤稳定性的降低,第二个剖面中沉降槽的地面损耗率和宽度参数均大于第一个剖面。

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