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The tunnel wall collapse and pothole creation on the hilly terrain surface: a case study of stabilization

机译:隧道墙壁折叠和坑洞创造在丘陵地表面上:一种稳定化的案例研究

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An approximately 2-km-long tunnel is located in the heart of the Bailadila hills in India and is used for the transportation of iron ore excavated from nearby mines. A portion measuring 2 m height and 5 m width of the Reinforced Cement Concrete (RCC) wall of this tunnel was severely ruptured and caved in bringing a lot of debris and the slush. This caused subsidence on the hilly terrain surface exactly overlying the affected tunnel portion. Various stabilization measures consisting of cement grouting in tandem with chemicals were undertaken to strengthen the failed concrete lining as well as the rock and soil mass of tunnel walls and roof in and around the collapsed portion. Additional stabilization measures were also undertaken to back-fill the cavity/pothole formed on the hilly terrain surface. Further, monitoring of the stabilized zone was carried out by installing mechanical type convergence indicators in the tunnel walls and roof. Also, the efficacy of grout was estimated using an ultrasound sonic tester and through Schmidt hammer rebound tests. The paper presents this case study along with the conclusions and recommendations, which were drawn based on this study.
机译:大约2公里长的隧道位于印度的Bailedila山丘的中心地带,用于从附近矿山挖掘的铁矿石运输。该隧道增强水泥混凝土(RCC)宽度的2米高和5米宽的部分严重破裂并陷入了大量的碎片和泥浆。这导致丘陵地形表面的沉降完全覆盖受影响的隧道部分。采取各种稳定措施,包括化学品串联水泥灌浆,以加强混凝土衬里的故障和隧道墙壁和屋顶岩石和覆盖部分的岩石和土壤质量。还进行了额外的稳定措施,以回到丘陵地形表面上形成的腔/坑洞。此外,通过在隧道墙壁和屋顶安装机械型收敛指示器来进行对稳定区的监测。此外,使用超声波音质测试仪和施密特锤反弹试验估计灌浆的功效。本文提出了本案例研究以及基于这项研究的结论和建议。

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