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Excessive groundwater inflow during TBM tunneling in limestone formation

机译:石灰岩地层TBM掘进过程中过多的地下水流入

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A sudden increase of groundwater inflow of 670 tons a day was experienced during tunneling in a limestone formation at around 53 m below the ground surface. The limestone cavities were expected to be located at 5-10 m or more above the tunnel crown in geotechnical exploration. However, limestone cavity network was encountered at the tunnel depth, and large groundwater inflow was experienced. Because of the excessive groundwater inflow into the tunnel, the groundwater level dropped to GL-32 m from the original level of GL-16 m, and consequently maximum of 23 mm of ground settlement and damage of adjacent structures took place. In this study the change of groundwater regime during tunneling in limestone area containing cavity network was analyzed through 3-dimensional numerical analysis, and the mechanism of groundwater level drawdown followed by ground subsidence was analyzed by comparing measurements and numerical analysis results. And also the analytical solution for determining the range of cutoff grouting was proposed to minimize groundwater inflow during excavation in a fractured zone.
机译:在地下约53 m处的石灰岩地层中进行隧道掘进时,一天的地下水流入量突然增加了670吨。在岩土勘探中,预计石灰岩腔位于隧道顶部上方5-10 m或更多。但是,在隧道深处遇到了石灰岩腔网络,并经历了大量的地下水流入。由于过多的地下水流入隧道,地下水位从原来的GL-16 m降至GL-32 m,因此最大的地面沉降量为23 mm,相邻建筑物遭到破坏。本研究通过三维数值分析的方法,对含空腔网络的石灰岩地区的隧道开挖过程中的地下水变化进行了分析,并通过比较测量结果和数值分析结果,分析了地下水位下降和地面沉降的机理。此外,还提出了一种用于确定临界灌浆范围的分析解决方案,以最大程度地减少裂缝区开挖过程中的地下水流入量。

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