DOI QR코드

DOI QR Code

Analysis of Ground Movements due to Tunnel Excavation Considering Ground Conditions, Excavation Characteristics, and Ground Layer Formations

지반조건, 굴착특성 및 지층구성을 고려한 터널굴착 유발 지반변위 거동분석

  • 손무락 (대구대학교 토목공학과) ;
  • 윤종철 (대구대학교 토목공학과)
  • Received : 2009.05.11
  • Accepted : 2009.07.29
  • Published : 2009.09.30

Abstract

Tunnelling-induced settlements and lateral ground movements have been investigated by numerical parametric studies considering ground condition, excavation characteristics, and ground layers. Before the numerical study the existing methods of ground movement estimation have been collected and analysed to have some information of ground movements and to improve them providing a fundamental material for the numerical study. Numerical model simulation has been performed of a physical model test of tunnel excavation in which the ground movements were measured reliably and the results have been used to determine the numerical approach and the appropriate soil constitutive mode. With this procedure done, the results of numerical parametric studies have been put together to analyze and understand tunnelling-induced settlements and lateral ground movements.

본 논문에서는 지반의 지반조건, 굴착특성 및 지층구성을 고려한 터널굴착 유발 주변지반의 침하 및 수평변위에 대한 거동특성을 수치해석적 방법으로 조사하였다. 이를 위해서 먼저 지반변위 예측방법에 관한 관련 사례조사 및 문제점분석을 수행하고, 이를 바탕으로 한 수치해석적 매개변수연구를 수행하였다. 이러한 사례조사의 분석결과는 지반조건에 따른 주변 지반변위의 특성을 일차적으로 파악하기 위해 이용되며, 또한 기존방법의 문제점을 파악함과 동시에 수치해석적 매개변수연구를 위한 기초자료로서 활용된다. 수치해석적 매개변수연구는 먼저 굴착유발 주변 지반변위 계측이 신뢰성 있게 측정된 사례를 토대로 시뮬레이션을 실시하여 수치해석상 필요한 접근방법 및 적합한 지반모델을 설정하고, 이를 토대로 지반조건, 굴착 특성 및 지층구성을 달리한 매개변수 연구를 수행하였다. 이러한 과정을 수행한 후 굴착으로 인한 주변지반의 침하 및 수평 지반변위가 변해가는 과정을 종합적으로 분석하여 그 거동을 파악하였다.

Keywords

References

  1. Attewell, P.B. (1978) Ground movements caused by tunnelling in soil, Proc. Conf. Large Ground Movements and Structures, Cardiff, Pentech Press, pp. 812-948.
  2. Cheng, C.Y., Dasari, G.R., Chow, Y.K., and Leung, C.F. (2007) Finite element analysis of tunnel-soil-pile interaction using displacement controlled method, Tunnelling and Underground Space Technology, Vol. 22, pp. 450-466. https://doi.org/10.1016/j.tust.2006.08.002
  3. Clough, G.W. and Schmidt, B. (1981) Design and performance of excavations and tunnels in soft clay, Soft Clay Engineering, Elsevier, NY, pp. 569-634.
  4. Cording, E.J. and Hansmire, W.H. (1975) Displacements around soft ground tunnels, General Report, Session 4, 5th Panamerican Cong. on Soil Mech. and Foun. Engr. Buenos Aires, November.
  5. 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.
  6. Deane, A.P. and Bassett, R.H. (1995) The Heathrow Express Trialr Tunnel, Proc. of Inst. of Civil Engineers, Vol. 113, pp. 144-156.
  7. Ghaboussi, J., Ranken, R.E., and Karshenas, M. (1978) Analysis of subsidence over soft-ground tunnels, Proc. Int. Conf. on Evaluation and Prediction of Subsidence, Pensacola Beasch, FL, pp. 182-196.
  8. Glossop, N.H. (1978). Soil deformation caused by soft ground tunneling, Ph.D. dissertation, University of Durham, UK.
  9. Hong, S.W. and Bae, G.J. (1995) Ground movements associated with subway tunneling in Korea, Underground Construction in Soft Groundt (eds. K. Fujita and O. Kusakabe), Balkema, pp. 229-232.
  10. Hong, S.W. (1984) Ground movements around model tunnels in sand, Ph.D. dissertation, University of Illinois at Urbana-Champaign, Urbana, IL. USA.
  11. Mair, R.J. (1979) Centrifugal Modeling of tunneling construction in soft clay, Ph.D. dissertation, University of Cambridge, U.K.
  12. O'Reilly, M. P. and New, B. M. (1982) Settlements above tunnels in the United Kingdom - their magnitude and effects, Tunnelling '82, M. J. Jones, ed., London, England, pp. 173-181.
  13. Panet, M. and Guenot, A. (1982) Analysis of convergence behind the face of a tunnel, Proc. Tunnelling 82, Institution of Mining and Metallurgy, London, pp. 197-204.
  14. Potts, D.M. (1976) Behavior of lined and unlined tunnels in sand, Ph.D. dissertation, University of Cambridge, U.K.
  15. Peck, R.B. (1969) Deep excavations and tunneling in soft ground, Proc. 7th Int'l Conf. on Soil Mech. and Foun. Engr., Mexico City, State-of-the-Art, pp. 225-290.
  16. Sagaseta, C. (1987) Analysis of undrained soil deformation due to ground loss, Geotechnique, Vol. 37, No. 3, pp. 301-320. https://doi.org/10.1680/geot.1987.37.3.301
  17. Verruijt, A. and Booker, J.R. (1996) Surface settlements due to deformation of a tunnel in an elastic half plane, Geotehchnique, Vol. 46, No. 4, London, U.K., pp. 753-756. https://doi.org/10.1680/geot.1996.46.4.753