Foundation Analysis and Design Using CPT Results : Settlement Estimation of Shallow Foundation

CPT 결과를 이용한 기초해석 및 설계 : 얕은 기초의 침하량 산정

  • 이준환 (연세대학교 공과대학 사회환경시스템공학부) ;
  • 박동규 (연세대학교 공과대학 사회환경시스템공학부)
  • Published : 2004.10.01

Abstract

The settlement of foundations under working load conditions is an important design consideration. Well-designed foundations induce stress-strain states in the soil that are neither in the linear elastic range nor in the range usually associated with perfect plasticity. Thus, in order to accurately predict working settlements, analyses that are more realistic than simple elastic analyses are required. The settlements of footings in sand are often estimated based on the results of in-situ tests, particularly the standard penetration test (SPT) and the cone penetration test (CPT). In this paper, we analyze the load-settlement response of vertically loaded footings placed in sands using both the finite element method with a non-linear stress-strain model and the conventional elastic approach. Based on these analyses, we propose a procedure for the estimation of footing settlement in sands based on CPT results.

얕은기초의 설계에 있어 작용하중에 의한 침하량 산정은 기초의 지지력 산정과 함께 매우 중요한 고려사항이다. 상부구조물에 의한 설계하중이 지표면의 기초지반에 직접 작용하는 얕은기초의 경우, 기초지반의 거동은 일반적으로 완전 선형탕성도 아니며, 파괴에 도달한 소성상태도 아닌 비선형 응력-변형률의 거동을 보이게 된다. 이러한 지반의 비선형성은 침하량 산정에 있어 매우 중요한 요소로 간주될 수 있으나, 실제 설계에 있어서는 대표탄성계수의 적용에 의한 간편법이 보편적으로 적용되고 있다. 일반적으로 사질토지반에 놓인 얕은기초 침하량 산정은 표준관입시험(SPT)나 콘관입시헙(CPT) 등의 현장시험 결과를 토대로 이루어진다. 본 연구에서는 비선형 유한요소해석에 의한 얕은기초 하중-침하량 분석을 수행하였으며, 기존의 탄성론에 근거한 침하량 산정법과의 비교분석 또한 수행하였다. 이와 같은 해석을 통하여 콘관입시헙(CPT) 결과에 근거한 새로운 얕은기초 침하량 산정법 및 얕은기초 설계법을 제안하였다.

Keywords

References

  1. Berardi, R., lamiolkowski, M., and Lancellotta, R. (1991), 'Settle-ment of Shallow Foundations in Sands Selection of Stiffuess on the Basis of Penetration Resistance', Proceedings of the Congress Sponsored by the Geotechnical Engineering Division of the ASCE, Vol.1, Geotechnical Special Publication 27, pp.185-200
  2. Bolton, M. D. (1986), 'The Strength and Dilatancy of Sands', Geotechnique, Vol.36, No.1, pp.65-78 https://doi.org/10.1680/geot.1986.36.1.65
  3. Briaud, J. L. and Gibbens, R. (1994), 'Test and Prediction Results for Five Large Spread Footings on Sand', Proceedings of a Prediction Symposium Sponsored by the Federal Highway Admini-stration at the Occasion of the Settlement 94 ASCE Conference at Texas A&M University, ASCE, Geotechnical Special Publication, No.41, pp.92-128
  4. Burland, J. and Burbidge, M. (1985), 'Settlement of Foundations on Sand and Gravel', Proceedings of Institute of Civil Engineers, Part I, Vol.78, London, pp.1325-1381
  5. Duncan, J. M. and Chang, C. Y. (1970), 'Nonlinear Analysis of Stress-Strain in Soils', Journal of Soil Mechanics and Foundation Engineering Division, ASCE, Vol.96, No.5, pp.1629-1653
  6. Lee, J. H. and Salgado, R. (2000), 'Analysis of Calibration Chamber Plate Load Tests', Canadian Geotechnical Journal, Vol.37, No.1, pp.14-25 https://doi.org/10.1139/cgj-37-1-14
  7. Meyerhof, G. (1965), 'Shallow Foundations', Journal of Soil Me-chanics and Foundations Division, ASCE, Vol.91, No2, pp.21-31
  8. Peck, R. and Bazarra, A. (1969), 'Discussion of Settlement of Spread Footings on sands, by DAppolonia and Brisette', Journal of Soil Mechanics and Foundations Division, ASCE, Vol.95, No.3, pp.905-909
  9. Robertson, P. K. and Campanella, R. G. (1989), Guidelines for Geotechnical Design Using the Cone Penetrometer Test and CPT with Pore Pressure Measurement, 4th ed. Hogentogler & Co., Columbia, MD
  10. Salgado, R. and Randolph, M. (2001), 'Analysis of Cavity Expansion in Sand', International Journal of Geomechanics, Vol.1, No2, pp.175-192 https://doi.org/10.1061/(ASCE)1532-3641(2001)1:2(175)
  11. Schmertmann, J. H. (1970), 'Static Cone to Compute Static Settlement Over Sand', Journal of Soil Mechanics and Foun-dations Division, ASCE, Vol.96, No.3, pp.1011-1042
  12. Schmertmann, J. H., Hartman, J. P., and Brown, P. R. (1978), 'Improved Strain Influence Factor Diagrams', Journal of the Geotechnical Engineering Division, ASCE, Vol.104, No8, pp. 1131-1135
  13. Terzaghi, K. and Peck, R. B. (1967), Soil Mechanics in Engi-neering Practice, 2nd Edition, John Wiely and Sons Inc, New York, N.Y.