바로가기메뉴

본문 바로가기 주메뉴 바로가기

logo

근접굴착 시 벽체에 선행하중 재하에 따른 터널의 거동

Behavior of tunnel under the influence of pre-loading on braced wall during the adjacent ground excavation

(사)한국터널지하공간학회 / (사)한국터널지하공간학회, (P)2233-8292; (E)2287-4747
2007, v.9 no.4, pp.331-341
김일 (아주대학교)
이상덕 (아주대학교)
  • 다운로드 수
  • 조회수

초록

기존터널에 근접 굴착 할 때 발생하는 흙막이벽체의 수평변위를 억제시키기 위해 버팀대에 선행하중을 가했다. 이러한 목적으로 흙막이벽체에 큰 선행하중을 가할 수 있는 새로운 선행하중 시스템을 모형시험에 적용하였다. 대형 시험은 폭 2.0 m, 높이 6.0 m, 길이 4.0 m인 모형 토조에서 수행하였고 시험지반은 모래로 조성하였다. 직경 1.2 m인 모형 터널은 시험지반 굴착 전에 설치하고 지반을 조성한 후에 모형터널에 근접해서 흙막이벽체를 설치하고 시험지반을 굴착하면서 모형 터널과 흙막이벽체 및 지반의 거동을 측정하였다. 이때에 선행하중 재하효과를 확인하기 위하여 선행하중을 가하지 않는 시험은 물론 선행하중을 가하여 흙막이벽체의 수평변위를 억제하는 시험을 실시하였고 수치해석을 실시하여 대형 시험결과와 비교하였다. 그 결과 선행하중을 설계축력 이상으로 적용시켜 흙막이벽체의 수평변위를 감소시켰을 때 벽체 배면에 있는 기존 터널의 안정성이 크게 향상되는 것을 확인할 수 있었다.

keywords
지반 굴착, 흙막이벽체, 선행하중, 대형 시험, 터널 안정성, Ground excavation, braced wall, pre-loading, large scale model test, tunnel stability, Ground excavation, braced wall, pre-loading, large scale model test, tunnel stability

Abstract

could be imposed on the braced wall to prevent the horizontal displacements during the ground excavation adjacent to the existing tunnel. For this purpose, new pre-loading system through which large pre-loads could be applied to the braced wall was used in the model tests. Large scale model tests were performed in the real scale test pit which was 2.0 m in width and 6.0 m in hight and 4.0 m in length. Test ground was constructed by sand. Model tunnel in 1.2 m diameter was constructed before test ground excavation. Test ground was excavated adjacent to existing tunnel and was braced. To investigate the effect of pre-loading, tests without pre-load were also performed. During the ground excavation were the behavior of braced wall, test tunnel, and ground measured. Model tests were also numerically analysed and their results were compared to that of the real scale tests. As a result, it was found that the stability of the existing tunnel was greatly enhanced when the horizontal displacements of braced wall was reduced by applying pre-load larger than the design load.

keywords
지반 굴착, 흙막이벽체, 선행하중, 대형 시험, 터널 안정성, Ground excavation, braced wall, pre-loading, large scale model test, tunnel stability, Ground excavation, braced wall, pre-loading, large scale model test, tunnel stability

참고문헌

1.

(1998) 토질 역학 제 2판,

2.

(2003) 최신 터널 기술의 이해 ,

3.

(2002) 선행하중과 벽체 강성에 따른 흙막이 벽 및 인접 지반 거동 ,

4.

(2007) 축소모형실험을 위한 재료특성 연구,

5.

(2007) 근접병설터널 설계를 위한 모형시험 및 시험발파,

6.

(1976) The Ground movements related to braced excavation and their influence on adjacent buildings S Department of Transportation,

7.

(1981) Ground movements caused by braced excavation Journal of Geotechnical Engineering Division,

8.

(1972) Analytical study of braced excavation in weak clay,

9.

(1997) Foundation Engineering Mannual,

10.

(1985) On structural design models for tunnels in soft soil, Pergamon Press

11.

(1993) Two- and three-dimensional analyis of closely spaced double- tube tunnels,

12.

(1996) Scale model study of strata movement around mine roadways. Apparatus, technique and some preliminary results,

13.

(1975) 土留め 構造物の 構造物,

(사)한국터널지하공간학회