Comparative Study of Dutch Cone and Piezocone Penetration Test on Soft Ground

연약지반에 대한 더치콘과 피에조콘 관입시험 비교 연구

  • 원정윤 (서울대학교 농업생명과학대학) ;
  • 장병욱 (서울대학교 농업생명과학대학) ;
  • 우철웅 (서울대학교 농업생명과학대학) ;
  • 윤상묵 ((주)쏘일테크엔지니어링)
  • Published : 2003.03.01

Abstract

134 Dutch cone (mechanical cone) and 9 piezocone (electronic cone) penetration tests have been performed in the southwestern part of Korea. In general, Dutch cone results may be different from that of piezocone due to the difference in structure of the cones. 6 Dutch cone and piezocone test data which were obtained at the same point respectively, were analyzed and plotted in soil classification chart proposed by Robertson et. al.(1986, 1990). Cone factors of Dutch cone and piezocone test empirically have been determined using laboratory and field vane test results. Using this cone factors, it was shown that there was good correlation between shear strength estimated using cone resistance and that of laboratory test and field vane tests. It was found that there was a good correlation between cone resistance from Dutch cone and that from piezocone. Relationship formula was also suggested. Dutch cone test provides a useful means for stratigraphic profiling in large project and has some advantage over piezocone in particular situations, such as very soft clay ground and dredged area.

Keywords

References

  1. ASTM. Standard Test Method for Performing Electronic Friction Cone and Piezocone Penetration Testing of Soils. ASTM D 5778-95
  2. Jang, I. S., Lee, S. J., Chung, C. K. and Kim, M. M., 2001. Piezocone factors of Korean clayey soils. Journal of Korean Geotechnical Society. Vol. 17, No.6, 15-24 (in Korean)
  3. JeollaNamdo. 2002. Soils Report for Nam-Ak New Town. (in Korean)
  4. Kim, J. P., 1999. Collection of mechanical cone penetration test for civil engineers. (in Korean)
  5. Kulhawy, F. H. and Mayne, P. H., 1990. Manual on estimating soil properties for foundation design. Electric Power Research Institute EPRI
  6. Lim D. I., 2001. Late Quaternary Stratigraphy and Sedimentology of Tidal-Flat Deposits: Kyunggi Bay, Namyang Bay, Chonsu Bay, Hampyung Bay and Haenam Bay, Western Coast of Korea. Ph. D. Diss. : Seoul National University
  7. Lunne, T., Robertson, P. K. and Powell, J. J. M., 1997. Cone Penetration Testing in Geotechnical Practice. Blackie academic and Professional, UK
  8. Robertson, P. K., 1990. Soil classification using the cone penetration tests. Canadian Geotechnical Journal. 27(1). 151-158
  9. Robertson, P. K., Campanella, R. G., Gillespie, D. and Greig, J., 1986. Use of piezometer cone data. Proceedings of the ASCE Specialty Conference In Situ '86: Use of In Situ Tests in Geotechnical Engineering, Blacksberg. 1263-1280. ASCE
  10. Rol, A. H., 1982. Comparative study on cone resistance measured with three types of CPT tips. Proceedings of the 2nd European Symposium on Penetration Testing. ESOPT II. Amsterdam. 2. 813-819. Balkema pub., Rotterdam
  11. Rural Development Corporation. 1998. Practical Application of Cone Penetration Testing. (in Korean)