Abstract
In this study, the subsidence behavior caused by groundwater ex-flow in a limestone cavity encountered during tunnel excavation was quantified based on numerical analysis and the effect was analyzed. Based on the groundwater level and surface subsidence surveyed at the site, a numerical analysis technique was applied to analyze the characteristics of the subsidence behavior according to the tunnel passage of the geological vulnerabilities. The results of groundwater seepage-coupled analysis were analyzed to reflect the actual ground subsidence behavior. As a result of the study, it was analyzed that the ground subsidence due to the tunnel excavation in the limestone common section(the geological vulnerable zone) was analyzed that the dramatical decrease in groundwater level was the main cause. As a result of numerical analysis, it was analyzed that the long-term cumulative settlement of the asphalt surface after the groundwater ex-flow was 76~118mm due to the reduction of the volume of the soil layer due to the decrease in the groundwater level, and the settlement amount increased as the depth of the soil layer increased.
본 연구에서는 터널 굴진 시 조우한 석회공동의 지하수 유출에 따른 지반침하 거동을 수치해석을 바탕으로 정량화하고 영향정도를 분석하였다. 현장에서 조사된 지하수위 및 지표면 침하량 등을 토대로 수치해석 기법을 적용하여 지질취약대 터널통과에 따른 지반침하거동의 특성을 분석하였다. 지하수 침투-응력연계해석결과, 수치해석결과는 실제 지반침하거동을 잘 반영하는 것으로 분석되었다. 연구결과, 지질취약대인 석회암 공동구간의 터널 굴착에 따른 지반 침하는 급격한 지하수위 하강이 주요 원인인 것으로 분석되었다. 수치해석결과, 지하수위 강하에 의한 토사층 체적감소로 인해 지하수 유출된 이후의 장기적인 아스팔트 지표면 장기 누적침하량은 76~118mm인 것으로 분석되었으며 침하량은 토사층 깊이가 깊을수록 증가하는 양상을 나타냈다.