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Experimental study on seepage characteristics and water inrush of filled karst structure in tunnel

机译:隧道填充岩溶结构渗流特性及潮流的实验研究

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摘要

Taking Qiyueshan Tunnel as the engineering background, the three-dimensional model test system of tunnel water inrush and mud gushing was independently developed to study the structural instability characteristics and seepage laws of karst conduit fillings with different permeability coefficients. Then, the instability process of the filling, the evolution of water pressure, and the characteristics of the hydraulic gradient were analyzed. It is concluded that the fillings with different permeability coefficients show different instability characteristics, and the failure types of karst conduit filling are divided into sand inrush, water inrush, and mud inrush according to the instability characteristics of the filling. The pore water pressure at each measuring point in the filling material tends to decrease gradually along the direction of the confined water seepage. As the pressure of the confined water increases, the pore water pressure value of each measuring point increases gradually. And the higher the content of clay in the filling material is, the higher the maximum confined water pressure that the filling can bear when the filling material is unstable. The average hydraulic gradient in the filling increases with the increase of confined water pressure. The adjacent hydraulic gradient value increases with the increase of confined water pressure.
机译:以齐源隧道作为工程背景,独立开发了隧道水中涌入和泥浆涌出的三维模型试验系统,以研究具有不同渗透系数的岩溶导管填充结构的结构不稳定特性和渗流法。然后,分析了填充的不稳定过程,水压的演化和液压梯度的特征。结论是,具有不同渗透系数的填充物显示出不同的不稳定特性,并且根据填充的不稳定特性,岩溶导管填充的故障类型的破坏类型分为砂涌入,水浪涌和泥浆涌入。填充材料中的每个测量点处的孔隙水压倾向于沿着受限水渗流的方向逐渐降低。随着限制水的压力增加,每个测量点的孔隙水压力值逐渐增加。并且填充材料中粘土的含量越高,填充材料在填充材料不稳定时填充能够承受的最大限制水压力越高。填充中的平均水力梯度随着狭窄的水压的增加而增加。随着狭窄的水压的增加,相邻的液压梯度值增加。

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