암반의 이방성이 터널 굴착에 미치는 영향에 대한 수치해석적 연구

A numerical analysis study on the effects of rock mass anisotropy on tunnel excavation
  • 윤지석
  • 신상혁
  • 김한얼
  • 유한규

초록

In general tunnel design and analysis, rock masses are often assumed to be isotropic. Under isotropic conditions, material properties are uniform in all directions, leading to a higher evaluation of tunnel stability. However, actual rock masses exhibit anisotropic characteristics due to discontinuities such as joints, bedding planes, and faults, which cause material properties to vary with direction. This anisotropy significantly affects the stress distribution during tunnel excavation, leading to non-uniform deformation and increased risk of damage. Therefore, thorough pre-analysis is essential. This study analyzes the displacement and stress changes occurring during tunnel excavation based on rock anisotropy. A three-dimensional numerical analysis was performed, selecting anisotropy index and dip angles as variables. The results showed that as the anisotropy index increased, the displacement in the tunnel increased, and stress concentration became more pronounced. The maximum displacement and shear stress were observed where the dip planes met the tunnel.

키워드

이방성 암반이방성 지수경사각변위응력Anisotropic rockAnisotropic indexDip angleDisplacementStress
제목
암반의 이방성이 터널 굴착에 미치는 영향에 대한 수치해석적 연구
제목 (타언어)
A numerical analysis study on the effects of rock mass anisotropy on tunnel excavation
저자
윤지석신상혁김한얼유한규
발행일
2024-07
저널명
한국터널지하공간학회 논문집
26
4
페이지
327 ~ 344