A Study on Determining the Design Parameter ($N_c$, $T_i$) of the Surface Reinforcement Method for Soft Ground

연약지반 표층처리공법 설계정수(지지력계수$N_c$, 인장력$T_i$) 산정방법에 관한 고찰

  • Ham, Tae-Gew (Geotechnical Eng. Division, Korea Institute of Construction Technology) ;
  • Seo, Se-Gwan (Geotechnical Eng. Division, Korea Institute of Construction Technology) ;
  • Cho, Sam-Deok (Geotechnical Eng. Division, Korea Institute of Construction Technology) ;
  • Yang, Kee-Sok (Korea Port Eng.) ;
  • You, Seung-Kyong (Dept. of civil Eng, Myongji College)
  • 함태규 (한국건설기술연구원 토질및기초연구실) ;
  • 서세관 (한국건설기술연구원 토질및기초연구실) ;
  • 조삼덕 (한국건설기술연구원 토질및기초연구실) ;
  • 양기석 (한국항만기술단 기술연구소) ;
  • 유승경 (명지전문대학 토목과)
  • Published : 2009.03.27

Abstract

This study, as basic research which was intended to develope the surface reinforcement method using reinforcement material which is applicable to very soft ground in Korea, was aimed at proposing the design parameter for the surface ground improvement method. To that end, a wide width tensile test using geotextile, geogrid and steel bar (substitute for bamboo) and 25 kinds of the laboratory model tests with the end restraint conditions of the reinforcement that comprises the constrained and partially constrained (3 types) conditions were conducted. And the result indicated that the modulus of subgrade reaction or $N_c$ value (5.3) apparently overestimated the bearing capacity of very soft ground such as dredged ground. Moreover, as a result of model test by partially constraining the preload of 23.0kgf using geotextile, the effect of bearing capacity($q_1$) appeared to be the largest till the loading stress was $0.4tf/m^2$ due to cohesion, while it reached 75% of the maximum bearing force after $0.4tf/m^2$ due to increase in the effect of bearing capacity($q_2$) caused by the tensile force of the reinforcement. Such results tended to have appeared constantly or very similarly with each other, irrespective of the type of reinforcement (geogrid, steel bar) and constraint conditions.

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