DOI QR코드

DOI QR Code

Three Dimensional Numerical Analysis of Piled Raft on Soft Clay

연약지반에 시공된 Piled Raft 기초의 3차원 거동 분석

  • 이진형 (연세대학교 사회환경시스템 공학부) ;
  • 정상섬 (연세대학교 사회환경시스템 공학부)
  • Published : 2007.05.31

Abstract

Piled raft is known to be an unfavorable foundation type in soft clay because foundation is associated with both excessive settlement and bearing capacity failure problems. Despite these reasons, in recent decades, an increasing number of structures have been constructed over soft clay area, piled raft concepts arouse interest as the foundation of structures on soft clay area becomes popular. This study described 3 dimensional behavior of piled raft on soft clay based on a numerical study using 3D finite element method. A series of numerical analyses were performed for a various pile lengths and the pile configurations on the raft were subjected to vertical uniform or point loading. Based on the results of the parametric study, comparisons were made among the effect of loading type, various pile length and configurations, and the load-settlement behavior and load sharing characteristics of piled raft were also evaluated. From the results, the characteristic of piled raft on soft clay was examined.

Piled raft 기초는 연약지반상에서 과도한 침하와 raft 및 말뚝의 지지력 산정 문제 등으로 적합한 기초는 아닌 것으로 알려져 왔으나 최근 국내외에서 연약지반내 구조물 시공이 증대되면서 연약지반상 piled raft 기초에 대한 관심이 커지고 있다. 이에 본 연구에서는 연약지반에 시공된 piled raft기초의 거동을 분석하였으며 이를 위해 ABAQUS를 이용한 3차원 유한요소 해석을 실시하였다. 해석 시 하중은 등분포하중과 집중하중을 각각 적용하였으며 동일한 조건의 군말뚝과 piled raft 기초 및 다양한 말뚝 배치를 갖는 piled raft 기초를 대상으로 수행하였다. 본 연구결과, 하중형태, 다양한 말뚝 배치 및 근입 깊이에 대한 각각의 침하 및 하중분담특성을 비교, 분석하였으며 이를 통해 연약지반상의 piled raft 기초의 특성을 파악하였다.

Keywords

References

  1. 권오균, 오세붕, 김진복 (2005), '무리말뚝의 하중분담률에 관한 실험적 연구', 한국지반공학회 논문집, 특별논문집 제2호, 제21권 5호, pp.51-58
  2. 김경남, 이수형, 정충기, 이해성 (1999), 'Piled Raft 기초의 부동침하 최소화를 위한 최적말뚝배치', 대한토목학회 논문집, 제 III-4권, pp.831-839
  3. 김홍택, 강인규, 전응진, 박사원 (2000), '유전자 알고이즘을 이용한 Piled Raft 기초의 최적설계', 한국지반공학회 논문집, 제 16권 3호, pp.47-55
  4. 김홍택, 강인규, 박정주, 박순규 (2002), '사질토 지반에서 연직 하중을 받는 Piled raft 기초시스템의 하중분담특성에 관한 실내 모형실험 연구', 대한토목학회 논문집 제 22권 2-c호, pp.111-120
  5. 이승현, 권오균, 오세붕, 김병일 (2003), '말뚝지지 기초판의 하중분담', 대한토목학회 논문집, 제 23권 3c호, pp.143-150
  6. 이진형, 정상섬, 송성욱 (2006), '수치해석을 통한 연약지반상 Piled raft 기초의 거동 분석', '06 한국지반공학회 가을 학술발표회 논문집, 한국지반공학회
  7. 한국지반공학회 (1997), '구조물 기초 설계기준', pp. 477-478
  8. ABAQUS version 6.5 (2004), Hibbit, Karlsson & Sorensen, Pawtucket R.I
  9. Burland, J.B., Broms, B.B. and De Mello, V.F.B. (1977), 'Behaviour of founadations and structures', Proc. 9th Int. Conf. Soil Mechanics and Foundation Engineering, Tokyo, Vol.2, pp. 495-549
  10. Conte, G., Mandolini, A. and Randolph, M.F. (2003), 'Centrifuge modelling to investigate the performance of piled rafts', Proc. 4th Int. Geotechnical Seminar on Deep Foundation on Bored and Auger Piles, Ghent, Millpress, Rotterdam, pp.359-366
  11. Cooke, R.W. (1986), 'Piled raft foundations on stiff clays: a contribution to design philosophy', Geotechnique, Vol.36, No.2, pp. 169-203 https://doi.org/10.1680/geot.1986.36.2.169
  12. de Sanctis, L. and Mandolini, A. (2003), 'On the ultimate vertical load of piled rafts on the soft clay soils', Proc. 4th Int. Geotechnical Seminar on Deep Foundation on Bored and Auger Piles, Ghent, Millpress, Rotterdam, pp.379-386
  13. Horikoshi, K. and Randolph, M.F. (1996), 'Centrifuge modelling of piled raft foundations on clay', Geotechnique, Vol.46, No.4, pp.741-752 https://doi.org/10.1680/geot.1996.46.4.741
  14. Horikoshi, K. and Randolph, M.F. (1996), 'On the definition of raft-soil stiffness ratio', Geotechnique, Vol.47, No.5, pp.1055-1061
  15. Horikoshi, K. and Randolph, M.F. (1998), 'A contribution to the optimum design of piled rafts', Geotechnique, Vol.48, No.2, pp. 301-317 https://doi.org/10.1680/geot.1998.48.3.301
  16. Jeong, SS., Lee, J.H. and Lee, C.J. (2004), 'Slip effect at the pile-soil interface on dragload', Computers & Geotechnics, Vol.31, pp.115-126 https://doi.org/10.1016/j.compgeo.2004.01.009
  17. Katzenbach, R., Arslan, U. and Moormann, C. (1998), 'Design and safety concept for piled raft foundations', Proc. 3th Int. Geotechnical Seminar on Deep Foundation on Bored and Auger Piles, Ghent, Balkema, Rotterdam, pp.439-448
  18. Katzenbach, R. Arslan, U. and Moormann, C. (2000), 'Piled raft foundations projects in Germany', Design applications of raft foundations, Hemsley, J. A. Editor, Thomas Telford, pp.323-392
  19. Lee, C.J., Bolton, M.D. and Al-Tabbaa, A. (2002), 'Numerical modelling of group effects on the distribution of dragloads in pile foundations', Geotechnique, Vol.52, No.5, pp.325-335 https://doi.org/10.1680/geot.52.5.325.38704
  20. Mandolini, A. (2003), 'Design of piled raft foundations: Practice and development', Proc. 4th Int. Geotechnical Seminar on Deep Foundation on Bored and Auger Piles, Ghent, Millpress, Rotterdam, pp.59-80
  21. Prakoso, W.A. (1999), 'Numerical analysis of vertically-loaded and laterally-loaded raft foundations enhanced by deep foundation elements', MS thesis, Cornell University, Ithaca, NY, US
  22. Poulos, H.G. (2001), 'Piled-raft foundation; design and applications', Geotechnique, Vol.51, No.2, pp.95-113 https://doi.org/10.1680/geot.51.2.95.40292
  23. Poulos, H.G. (2005), 'Piled raft and compensated piled raft foundations for soft soil sites', Advances on Designin and Testing Deep Foundations, Geotechnical special publications No. 129, ASCE, pp.214-235
  24. Randolph, M.F. (1994), 'Design Methods for pile groups and piled rafts', Proc. 13th Int. Conf. on Soil Mechanics and Foundation Engineering, New Delhi, India, Vol.5, pp.61-82
  25. Reul, O. (2002), 'Study of the influence of the consolidation process on the calculated bearing behaviour of a piled raft', 5th European Conference Numerical Methods in Geotechnical Engineering, Paris, France, pp.383-388
  26. Reul, O. and Randolph, M.F. (2003), 'Piled rafts in overconsolidated clay-Comparison of in-situ measurements and numerical analyses', Geotechnique, Vol.53, No.3, pp.301-315 https://doi.org/10.1680/geot.53.3.301.37279
  27. Reul, O. and Randolph, M.F. (2004), 'Design strategies for piled rafts subjected to nonuniform vertical loading', J. of Geotech. Geoenviron. Eng., ASCE, 130(1), pp.l-13
  28. Seo, Y-K and Jeong, S-G (2004), 'Parametric Study of Piled Raft Foundation on Soft Clay', J of Ocean Science and Technology, Korean Society of Costal and Ocean Engineers, Vol.1(2), pp. 147-152
  29. Wang, A. (1996), 'Three dimensional finite element analysis of pile groups and piled-raft', PhD dissertation, University of Manchester, U.K