DOI QR코드

DOI QR Code

Response Analysis of Nearby Structures with the Consideration of Tunnel Construction and Ground Conditions

터널시공 및 지반조건을 반영한 인접구조물의 거동분석

  • 손무락 (대구대학교 토목공학과) ;
  • 윤종철 (대구대학교 토목공학과)
  • Received : 2010.06.30
  • Accepted : 2010.10.19
  • Published : 2010.12.31

Abstract

This paper investigates the effects of tunnelling-induced ground movements on nearby structures, considering soil-structure interactions of different construction (ground loss) and soil characteristics. The response of four-story block structures, which are subjected to tunnelling-induced ground movements, has been investigated in different construction (ground loss) and soil conditions using numerical analysis. The structures for numerical analysis has been modelled using Discrete Element Method (DEM) to have real cracks when the shear and tensile stress exceed the maximum shear and tensile strength. The response of four-story block structures has been investigated with a ground movement magnitude and compared in terms of construction (ground loss) and soil conditions considering the magnitude of deformations and cracks in structures. In addition, the damage levels, which are possibly induced in structures, has been provided in terms of construction (ground loss) and soil conditions using the state of strain damage estimation criterion (Son and Cording, 2005). The results of this study will provide a background for better understandings for controlling and minimizing building damage on nearby structures due to tunnelling-induced ground movements.

본 논문은 터널굴착으로 인해 발생된 인접지반에서의 지반변위가 구조물에 미치는 영향을 시공조건(지반손실) 및 지반의 특성을 달리하면서 지반-구조물 상호작용이 고려된 상태에서 조사한 것이다. 터널굴착에 의해 발생된 지반변위에 노출된 4층 블록식구조물이 서로 다른 시공조건(지반손실) 및 지반조건에 노출될 때 발생되는 구조물 거동이 수치해석을 통해 조사되었다. 수치해석을 위한 구조물은 소요전단 및 인장강도 이상의 응력이 발생할 때 구조물에 실제크랙이 발생될 수 있도록 개별요소법(DEM)을 이용하여 모델링되었다. 터널굴착유발 지반변위에 노출된 4층 블록식구조물의 거동 및 손상정도가 지반변위의 크기에 따라 조사되었으며, 발생된 구조물의 거동 및 손상정도는 구조물에 발생한 변형, 크랙크기 및 분포를 고려하여 시공조건(지반손실) 및 지반조건별로 비교되었다. 뿐만아니라, 다양한 시공조건(지반손실) 및 지반조건의 변화에 의해 구조물에 유발될 수 있는 손상정도의 크기가 손상도 예측기준(Son and Cording, 2005)을 사용하여 제시되었다. 이러한 결과들은 향후 터널굴착으로 인해 유발되는 인접구조물의 손상을 제어하고 최소화하는데 필요한 정보를 제공할 것이다.

Keywords

References

  1. Addenbrooke, T. I. (1996) Numerical Analysis of Tunneling in Stiff clay, Ph.D. dissertation, University of London (Imperial College of Science, Technology and Medicine).
  2. Atkinson, R. H., Amadei, B. P., Saeb, S., and Sture, S. (1989) Response of masonry bed joints in direct shear, J Structural Engr, ASCE, Vol. 115, No.9, pp. 2276-2296. https://doi.org/10.1061/(ASCE)0733-9445(1989)115:9(2276)
  3. Cording, E. J. (1984) Use of empirical data for braced excavations and tunnels in soil, Lecture Series, Chicago ASCE, Chicago, IL.
  4. Cording, E. J. (1991). Control of ground movements around tunnels in soil, Ninth Pan American Conference, Vina del Mar, Chile. Sociedad Chilena de Geotechina, Vol. 4, pp. 2195-2244.
  5. Giroud, J. P. (1969) Desplacement horizontal d'une droite particuliere de la surface d'un massif elastique semi-infini lineairement charge, Elastique Semi-infini Lineairement Charge, C.R. Acad.Sc. Paris, t268, Serie A, pp. 252-255.
  6. Hong, S. W. (1984). Ground Movements Around Model Tunnels in Sand, Ph.D. dissertation, University of Illinois at Urbana Champaign.
  7. Houlsby, G T., Burd, H. J., and Augarde, C. E. (1999) Analysis of tunnel-induced settlement damage to surface structures, XlI European Conference on Soil Mechanics and Geotechnical Engineering, Amsterdam, 7-10 June, Vol. 1, pp 147-152.
  8. Netzel, H. and Kaalberg, F. J. (2001) Numerical damage risk assessment studies on adjacent building in Amsterdam, Conference for Response of Building to Excavation-Induced Ground Movement, London.
  9. Page, A. W. (1978) Finite element model for masonry, J Structural Engr, ASCE, Vol. 104, No. 8, pp. 1267-1285.
  10. Son, M. and Cording, E. J. (2005) Estimation of building damage due to excavation-induced ground movements, J of Geote. and Geoen, Engr, ASCE, Vol. 131, No.2, pp. 162-177. https://doi.org/10.1061/(ASCE)1090-0241(2005)131:2(162)
  11. Son, M and Yun, J (2009) Numerical analysis of tunnelling-induced ground movements, Tunnel Technology, Vol. 11 , No. 3, pp. 229-243, Korea.
  12. Son, M. (2003). The response of Buildings to Excavation-induced Ground Movements, Ph.D. dissertation, University of Illinois at Urbana-Champaign.
  13. UDEC 3.1, Theory and Manual (2000) Itasca Consulting Group, Inc, MN.