Numerical Analysis on the Behavior of the Earth Tunnel due to Supporting Methods

지보공법에 따른 토사터널의 거동에 관한 수치해석

  • 김진태 (건일엔지니어링 지반부) ;
  • 박병수 (강원대학교 토목공학과) ;
  • 정길수 (강원대학교 대학원 토목공학과) ;
  • 유남재 (강원대학교 토목공학과)
  • Published : 2004.02.29

Abstract

Numerical analysis were performed to investigate the stability and internal movement of tunnel located beneath the base of abutment of bridge according to the method of supporting tunnel. Two supporting methods of the multi-staged grouting method with steel pipes and the large diameter of pipe supporting method were used in the centrifuge model tests. The slip form of model lining, specially built to simulate the process of tunnel excavating under the condition of accelerated g-level, was used in the centrifuge model tests. Four centrifuge model tests were performed, changing the supporting methods of the multi-staged grouting method with steel pipes and the large diameter of pipe supporting method and the location of model abutment base of bridge. For internal displacement of tunnel, movements of the crown. The left and the right sides of spring line were measured during the proceeds of excavating tunnel in centrifuge model tests. Test results were compared with numerically estimated values of internal displacement of tunnel by using the commercially available FEM software of PENTAGON-3D. It was found that they were in good agreements and the large diameter of pipe supporting method was more stable than the multi-staged grouting method with steel pipes with respect to the internal movement of tunnel.

Keywords