Abstract

본 연구에서는 터널구간에서 예상되는 지하수의 유동에 관한 현상을 규명하기 위하여 지하수 유동시스템의 거동을 3차원으로 해석하였으며, 터널구간의 설계와 시공기법을 선정하는데 해석견과를 활용토록 하고, 건설기간 중에 지하수 유동과 관련한 시공상의 장애를 사전에 파악하여 대책을 수립하는데 필요한 정보로 활용할 수 있도록 하였다. 대상터널은 편도 2차선인 2개의 평행터널인 법기터널 구간으로써 시추조사 및 투수시험을 실시하여 MODFLOW 모델의 매개변수를 추정하였다. 추정된 매개변수를 이용하여 MODFLOW모델에 의해서 굴착터널 내부의 지하수 유동을 해석하고 이로부터의 계산치와 관측치를 비교한 결과 두 값이 거의 일치하였다. 또한 터널굴착에 따라 지하수 유출량을 비교해 보면, 터널시점부터 종점까지 지하수 총유출량은 0.0269㎥/day/<TEX>$m^2$</TEX>로 추정되었다. In this study, the conduct of underground water flow system with 3 dimensions is interpreted in order to examine closely the actual condition regarding the flow of the underground water which is forecast from the tunnel segment and the interpretation result which selects the design and the construction technique of the tunnel segment was applied. Also, an obstacle to construct that relates with the underground water flow in construction duration in advance will be able to apply with information that is necessary in order to establish the countermeasure. The objective tunnel is the BEOPGI tunnel segment that is 2 parallel tunnels that are a one-way 2 lane and the parameters of the MODFLOW model executing the boring investigation and the permeability examination were presumed. The underground water flow of the excavation tunnel inside was interpreted by the MODFLOW model using the parameters which is presumed and two values which compared with calculated value and observed value are the same almost. Also, when the underground water discharge quantify that followed in tunnel excavation tries to compare, the underground water total discharge quantity from tunnel point of start until destination was presumed as 0.0269㎥/day/<TEX>$m^2$</TEX>.

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