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A new analytical method for determination of discharge duration in tunnels subjected to groundwater inrush

机译:一种新的分析方法,用于确定地下水浪涌的隧道中放电持续时间的分析方法

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摘要

Unexpected water inrush to tunnels is one of the most hazardous events, especially in karst terrains that could take place during mechanized shield tunneling mostly due to inappropriate site investigations. When water inrushes to tunnel front, actions like pumping out the water or grouting, for impeding or reducing the inrush and alleviating related damages, are often time-consuming, uneconomical, difficult, or sometimes even impossible. In most cases, it is sometimes necessary to wait for lowering groundwater within the tunnel to have again the possibility to excavate. Therefore, determination of the required time for the groundwater inrush to decrease to a certain level is extremely important for tunneling management plans and plays a significant role in decision-making for project managers. In this study, an assessment of the discharge time after water inrush to tunnel using the new proposed analytical approach is argued. This method is developed based on recession analysis and hydrodynamic of open channels. For this purpose, inrush rate to tunnel front and groundwater level should be measured on at least a daily basis, a feasible and practical action to be carried out on tunnel construction sites. The method is validated with available data from three tunnels with water inrush experiences. The results show that the analytically determined water inrush regime is in good accordance with the observed ones.
机译:意外的水涌到隧道是最危险的事件之一,特别是在机械化盾构隧道中可能发生的喀斯特地形,主要是由于现场调查不适当。当水浪涌隧道前面时,像泵出水或灌浆一样的动作,用于阻碍或减少涌入和减轻相关的损害,通常是耗时的,不经济,困难,或有时甚至不可能。在大多数情况下,有时需要等待隧道内降低地下水,再次具有挖掘的可能性。因此,对地下水涌入的所需时间减少到一定水平对于隧道管理计划非常重要,对项目经理的决策起着重要作用。在这项研究中,据说,据说使用新的提出的分析方法在水中涌入隧道后的放电时间。该方法是基于衰退分析和开放通道的流体动力开发的。为此目的,应至少日期地测量隧道前部和地下水位的浪涌速度,在隧道施工地点进行可行和实际的行动。该方法验证了来自三个隧道的可用数据,其中浪涌体验。结果表明,分析确定的水浪涌制度与观察到的水浪涌制度良好。

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