Tunnel Stability Assessment Considering Rock Damage from Blasting Near to Excavation Line

굴착선 주변공 발파의 암반손상을 고려한 터널 안정성 검토

  • 이인모 (고려대학교 공과대학 토목환경공학과) ;
  • 윤현진 (㈜바우컨설턴트 기술연구소) ;
  • 이형주 (삼성건설 토목영업팀) ;
  • 이상돈 (한국도로공사 도로교통기술원) ;
  • 박봉기 (고려대학교 공과대학 토목환경공학과)
  • Published : 2003.08.01

Abstract

Damage and overbreak of the remaining rock induced by blasting can not be avoided during tunnel construction which may result in either short-term or long-term tunnel instability. Therefore, in this paper, a methodology to take into account the effect of blast-induced damage in tunnel stability assessment is proposed. Dynamic numerical analysis was executed to evaluate damage and overbreak of the remaining rock for the most common blasting pattern in road tunnel. Rock damage was quantified by utilizing the damage variable factor which is adopted proposed in continuum damage mechanics. The damaged rock stiffness and the damaged failure criteria are used to consider the effect of rock damage in tunnel stability analysis. The damaged geological strength index of the damaged rock was newly proposed from the relationship between deformation modulus and geological strength index. Also the Hoek-Brown failure criteria of the damaged rock was obtained using the damaged geological strength index. Analysing the tunnel stability with the consideration of the blast-induced damage of remaining rock, it was found that the extend of plastic zone and deformation increased compared to the undamaged rock. Therefore the short-term or long-term tunnel stability will be threatened when the rock damage from blasting is ignored in the tunnel stability analysis.

발파설계가 터널 굴착 시 암반손상 및 여굴에 미치는 영향을 분석하고 암반손상 및 여굴이 터널 안정성에 미치는 영향을 분석함으로서 발파설계가 터널 지보설계에 미치는 영향을 연구하였다. 도로터널의 일반적인 발파패턴에 대해 동적발파 수치해석을 시행하고 연속체 손상역학(continuum damage mechanics)의 손상변수(damage variable)를 이용하여 여굴과 암반손상 정도를 분석함으로서 터널 굴착면 주위의 암반손상 정도와 영역을 구분하였다. 또한 발파하중 같은 동적하중이 암반내를 전파할 때 변화하는 암반의 동적파괴기준에 대한 연구를 수행하였다. 발파 암반손상 영향을 터널 안정성 해석에 반영하기 위하여 손상된 암반강성과 파괴기준을 적용하였다. 손상된 암반강성은 손상역학의 강도감소 모델을 이용하여 감소시켰다. 손상된 암반의 파괴기준은 암반강성과 지질강도지수의 관계식에서 도출한 손상된 지질강도지수(GSI$GSI_d$)를 적용함으로서 산출한 수정 Hoek-Brown 파괴기준을 적용하였다. 암반손상을 고려하여 터널안정성을 해석한 결과, 암반손상을 고려하지 않는 경우와 비교하여 소성영역 범위가 확대되고 변위량이 증가하였다. 이는 발파암반손상을 고려하지 않고 터널설계를 하는 경우 단기적 혹은 장기적으로 터널안정성이 위협받을 수 있음을 나타내었다.

Keywords

References

  1. 최신 발파기술 윤지선
  2. Innovative Mine Design for the 21st Century Proceeding of the International Congress on Mine Design Blast Damage Study by Measurement and Numerical Modeling of Blast Damage and Vibration in the Area adjacent to Blast Hole Bawden,W.F.;Katsabanis,P.;Yang,R.
  3. Int J. Rock Mech. Min. Sci. & Geomech. Abstr v.17 Continuum Modelling of Explosive Fracture in Oil Shale Grady,D.E.;Kipp,M.E.
  4. ABAQUS/Explicit (version 6.2) User`s Manual Hibbitt, Karlsson & Sorensen
  5. Hoek-Brown Failure Criterion(2002 Edition) Hoek,E.;Carranza-Torres,C.;Corkum,B.
  6. Ph.D. Thesis, Korea University Quantitative Assessment of Blast Waves and Numerical Approach for Tunnel Blasting Optimization Kim,S.G.
  7. MS. Thesis, Korea University Experimental Approaches on Estimation of Damage Zone due to Blast Loading Kweon,J.W.
  8. Int. J. Rock Mech. Min. Sci. v.34 no.2 Development of a Continuum Damage Model for Blasting Analysis Liu,L.;Katsabanis,P.D.
  9. Computer and Geotechnics v.22 Modeling of Wave Propagagtion Induced by Underground Explosion MA,G.W.;Hao,H,;Zhou,Y.X.
  10. Last Shock Hugoniot Data Marsh,S.R.
  11. Proc. Int. Symp. on Engineering Geology and Underground Construction, Lisbon v.1 no.II Consideration of the Geomechanical Classification of Bieniawski Serafim,J.L.;Pereira,J.P.
  12. Int. J. Rock Mech. Min. Sci. & Geomech. Abstr. v.11 Fragmentation of Rock under Dynamic Loads Shockey,D.A.;Curran,D.R.;Seaman,L.;Rosenberg,J.T.;Petersen,C.F.
  13. 3rd International Symposium on Rock Fragmentation by Blasting Experimental and Computational Investigation of the Fundamental Mechanics of Cratering Throne,B.J.;Hommert,P.J.;Brown,B.
  14. Computer Methods and Advances in Gemechanics Advances in Computational Mechanics Applied to Wave Propagation Problem Valliappan,S.;Wang,Y.C.
  15. Rock Fracture Mechanics Whittaker,B.N.;Singh,R.N.;Sun,G.
  16. Int. J. Rock Mech. Min. Sci. & Geomech. Abstr. v.33 A New Constitutive Model for Blast Damage Yang,R.;Bawden,W.F.;Katsabanis,P.D.
  17. International J. Rock Mechanics and Mining Sciences v.37 Applicability of Mohr-Coulomb and Hoek-Brown Strength Criteria to the Dynamic Strength of Brittle Rock Zhao,J.