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Prediction of water inflow in Tsingtao subsea tunnel based on the superposition principle

机译:基于叠加原理的青岛海底隧道涌水量预测

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Prediction of water inflow is a key scientific problem in construction of subsea tunnels. Tsingtao subsea tunnel is taken as the research object, and a calculation method for predicting and analyzing the water inflow based on superposition principle is proposed by applying theoretical analysis, numerical simulation and field monitoring. First of all, the computation model of seepage field and water inflow in the subsea tunnel is established. The permeability coefficients of strongly weathered layer and moderately weathered layer are determined according to the permeability coefficient of slightly weathered layer. Secondly, based on the well flow model of infinite confined aquifer, the double water gushing points calculation model is presented, and then the model is simplified into single water gushing point calculation model. The equivalent calculation formulas of water inflow under the condition of multi-horizontal strata are derived. The water inflow which is affected by the tunnel depth, radius and seawater depth is analyzed. Thirdly, the proposed method is compared with the engineering practice and numerical simulation, which verifies the accuracy and feasibility of the method. The results show that: (1) The water inflow of subsea tunnels increases with the permeability coefficients of strongly and moderately weathered layers. (2) The water inflow of subsea tunnels first decreases and then increases with the tunnel depth increasing. (3) The water inflow of subsea tunnels increases linearly with the tunnel radius and seawater depth.
机译:涌水量的预测是海底隧道施工中的关键科学问题。以青岛海底隧道为研究对象,通过理论分析,数值模拟和现场监测,提出一种基于叠加原理的水量预测与分析计算方法。首先,建立了海底隧道渗流场和入水量的计算模型。根据轻度风化层的渗透系数确定强风化层和中度风化层的渗透系数。其次,基于无限密闭含水层的井流模型,提出了双水涌点计算模型,然后将该模型简化为单水涌点计算模型。推导了多水平地层条件下的入水当量计算公式。分析了受隧道深度,半径和海水深度影响的入水量。第三,将该方法与工程实践和数值模拟进行了比较,验证了该方法的准确性和可行性。结果表明:(1)海底隧道入水量随强,中风化层渗透系数的增加而增加。 (2)随着隧道深度的增加,海底隧道的入水量先减少后增加。 (3)海底隧道的入水量随隧道半径和海水深度线性增加。

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