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An Analysis of Pile Foundation Load Transfer for Lightweight Pavement System in Clay Soil using Lab Chamber Test

모형챔버시험을 이용한 점성토 지반에 설치된 경량포장체용 기초의 하중전달 특성

  • Received : 2016.01.06
  • Accepted : 2016.04.15
  • Published : 2016.06.01

Abstract

The main purpose of this study is to analyze and evaluate the feasibility of ligthweight pavement system with pile foundation on soft soil by laboratory small chamber test. In order to verify the stability of lightweight pavement system, the 1/30 scaled downed model system was tested at lab. The soft soil condition was simulated and group piles for skin friction resistance were used. Within the limited lab test, the settlements of pavement system were 0.86 mm for Case A, 0.70 mm for Case B, and 0.50 mm for Case C. The converted maximum settlement differential settlement were 25.8 mm and 10.8 mm. These values meet the inside of specification of Bridge Design Guide in Korea. The use of lightweight pavement systems on soft soils could be an alternative construction method on soft soils to reduce the challenges of conventional design and constructions.

본 연구에서는 말뚝기초의 실내모형시험을 통해 연약지반상의 경량포장체용 기초로서의 적합성을 분석 및 평가를 목적으로 하고 있다. 안전성 평가를 위해 실내모형시험용 경량포장체용 말뚝기초모형을 실제 포장체 사이즈의 1/30으로 축소한 모형을 이용하여 시험을 실시하였다. 지반 조건은 연약지반을 모사하여 모델링하였고, 말뚝은 마찰군말뚝으로 실험하였다. 제한된 실험으로부터 측정된 모형포장체의 침하량은 Case A는 0.86 mm, Case B는 0.70 mm, Case C는 0.50 mm로 측정되었다. 측정된 말뚝기초 모형의 실험값을 실제 크기로 환산하였을 때의 최대침하량과 부등침하량은 각각 25.8 mm와 10.8 mm로 도로교 설계기준에 의거하여 최대부등변위량인 50 mm와 부등변위량 20 mm를 넘지 않는 것으로 보이며 침하량을 기준으로 안전성을 평가 할 경우 안전한 것으로 판정되었다.

Keywords

References

  1. Conte, G., Mandolini, A. and Randolph, M. F. (2003). "Centrifuge modelingto investigate the performance of piled rafts." Proc., Geotech. Int. Seminar on Deep Foundations on Bored and Auger Piles., Van Impe and Haegeman, eds., pp. 379-386.
  2. Ghosn, M., MOdes, F. and Wang, J. (1991). "Design of highway bridges for extreme events." NCHRP Report 489, Transportation Research Board, p. 183.
  3. Horikoshi, K. and Randolph, M. F. (1996). "Centrifuge modelling of piled raft foundation on clay." Getechnique, Vol. 46, No. 4, pp. 741-752. https://doi.org/10.1680/geot.1996.46.4.741
  4. Jang, S. Y., Won, J. O. and Jeong, S. S. (1999). "Analysis of passive pile groups subjected to lateral soil movements - A Study on the Model Test." Korean Geotechnical Society, pp. 239-248.
  5. Jeong, J. H., Jeong, K. J., King, H. J., Cho, S. M., Park, J. K. and Kim, D. S. (2005). "The evaluation and management of long-term settlement for the highway on the soft grounds." Korean Expressway Corporation, Research Report, pp. 5-8.
  6. Kaloush, K. E. (2001). "Simple performance test for permanent deformation of asphalt mixtures." Ph.D. Thesis, Arizona State University, p. 413.
  7. Kim, D. S. and Kim, N. (2013). "A newly developed state-of-the-art geotechnical centrifuge in Korea." KSCE Journal of Civil Engineering, Vol. 17, No. 1, pp. 77-84. https://doi.org/10.1007/s12205-013-1350-5
  8. Park, D. G., Choi, K. J. and Lee, J. H. (2012). "Analysis of piled raft interaction on sand with centrifuge test." Korea Geotechnical Society, Vol. 28, No. 10, pp. 27-40. https://doi.org/10.7843/kgs.2012.28.10.27
  9. Sanctis, L. and Mandolini, A. (2006). "Bearing capacity of piled rafts on soft clay soils." Journal of Geotechnical Engineering, ASCE, Vol. 132, No. 12, pp. 1600-1610. https://doi.org/10.1061/(ASCE)1090-0241(2006)132:12(1600)
  10. Shin, K. H., Hwang, C. B., Kim, S. K. and Lee, K. H. (2013). "Laboratory test of pile foundation for lightweight pavement." Korean Society of Road Engineers, 2013 Annual Conference, p. 105.
  11. Shin, K. H. (2014). "Indoor model experience for subsidence characterization of lightweight packing body with pile foundation." Master Thesis, Dept. of Civil Engineering, Kongju National University, p. 69.
  12. Shin, K. H., Hwang, C. B., Jeon, S. R. and Lee, K. H. (2014). "Load transfer characteristics of pile foundation for lightweight pavement in sand soil using laboratory chamber test." Journal of the Korea Academic-Industrial Cooperation Society, Vol. 15, No. 7, pp. 4588-4594. https://doi.org/10.5762/KAIS.2014.15.7.4588