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The impact of hydrogeology on the instability of a road cutting through a drumlin in Northern Ireland

机译:水文地质学对北爱尔兰穿过鼓林的道路不稳定性的影响

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This paper describes the hydrogeological processes that caused unexpected instability and quick conditions during the excavation of a 25 m deep cutting through a drumlin in County Down, Northern Ireland. A conceptual hydrogeological model of the cutting, based on pore pressures monitored during and after the excavation, demonstrates how quick conditions at the toe of the cutting caused liquefaction of the till. Stability of the cutting was re-established by draining the highly permeable, weathered greywacke that underlies the drumlin, through the use of a deep toe drain. In spite of this drainage, the cutting was only marginally stable, owing to the presence of a low-permeability zone in the till above the bedrock, which limits the reduction of elevated pore pressures within the upper to mid-depths of the drumlin. The factor of safety has been further improved by the addition of vertical relief drains at the crest and berm of the cutting to relieve the pore pressures within the upper till by intercepting the weathered bedrock. The paper also highlights the importance of carrying out an adequate site investigation compliant with Eurocode 7 and additional monitoring in excavations in stiff, low-permeability till.
机译:本文介绍了在北爱尔兰唐郡(County Down)的一条桶林中开挖25 m深的切槽时引起意外的不稳定和快速条件的水文地质过程。基于在开挖过程中和开挖后监测的孔隙压力的岩屑概念水文地质模型表明,岩屑脚趾处的快速条件如何导致耕层液化。通过使用深的鞋头排水装置来排出鼓粉底下的高渗透性,风化灰泥,从而重新建立了切割的稳定性。尽管存在这种排水,但由于基岩上方的耕层中存在低渗透带,因此切割仅在一定程度上是稳定的,这限制了鼓林的中高深度内孔隙压力的降​​低。通过在切割的波峰和坡口处增加垂直泄压口,以消除上层内部的孔隙压力,直至截留风化的基岩,从而进一步提高了安全系数。该文件还强调了进行符合欧洲规范7的适当现场调查以及对坚硬,低渗透性的开挖进行额外监测的重要性。

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