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Slope Stability for Bridge Access Road on Sedimentary Rocks using Geological Cross Sections

지질단면을 이용한 교량 접속도로 퇴적암 비탈면의 안정성 검토 연구

  • 임명혁 (대전학교 건설안전공학과)
  • Received : 2021.12.27
  • Accepted : 2022.01.08
  • Published : 2022.01.31

Abstract

The subjects of the study are the sedimentary rock slope of the Mesozoic Gyeongsang Supergroup, which has a high risk of failure. The rocks of the slope shall be sandstone, siltstone and dacite, and discontinuities shall develop beddings, shear joints, extension joints, and dacite dyke boundary planes. The type and scale of failure varies depending on the type of rock and the strike/dip of the discontinuities, but the planar failure prevails. Based on the face-mapping data, SMR, physical and mechanical testing of rocks, the critical equilibrium analysis, all representative sections required a countermeasure method because the acceptable safety factor during dry and rainy seasons were far below Fs=1.5 and Fs=1.2. After applying the countermeasure method, both the dry and wet conditions of the slope exceeded the allowable safety factor. In particular, the face-mapping data of the slope-face, the geological cross-sections of several representative sections perpendicular to the slope-face, and the critical equilibrium analysis and the presentation of countermeasure methods that have been reviewed based on them are expected to be reasonable tools for the slope stability.

연구 대상은 교량 접속도로 절취비탈면으로서 파괴 위험 가능성이 큰 중생대 경상누층군 퇴적암 비탈면이다. 비탈면의 구성 암석은 사암, 미사암 및 암맥이며, 불연속면은 층리와 전단절리, 인장절리 및 암맥 접촉면이 발달한다. 구간별로 파괴의 유형과 규모는 암석의 종류와 불연속면의 배향에 따라 다양하나 평면파괴가 우세하고, 파괴암체의 크기는 대부분 1m3 이하이다. face-mapping 자료, SMR, 암석의 물성·역학시험, 구간별 지질횡단면도 분석 및 한계평형해석으로 종합·검토한 결과, 대표적 단면 모두 건기 시와 우기 시의 허용안전율에 크게 미달하여 대책공법이 필요 하였다. 따라서 경제성, 효율성, 현장 특성, 등을 고려하여 비탈면 내 구간과 위치에 따라 대책공법 안을 제안하였고 대책공법을 적용한 후 비탈면의 건기 및 우기 시의 안전율은 모두 허용안전율을 상회 하였다. 특히, 법면 face-mapping 자료와 법면에 수직인 여러 대표 구간의 지질횡단면도, 그를 기본도면으로 사용한 한계평형해석 및 대책공법 제시는 비탈면의 객관적인 해석 및 안정성 검토의 합리적인 도구가 될 것으로 예상한다.

Keywords

Acknowledgement

이 논문은 2021학년도 대전대학교 교내학술연구비 지원에 의해 연구되었음

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