The Interpretation on Underground Stress of Soil Layer Subjected to Moving Repeated Loads

이동하중에 의한 지중응력 해석

  • 박흥규 (관동대학교 공과대학 토목공학과) ;
  • 김대영 (현대건설(주) 기술연구소)
  • Published : 2005.04.01

Abstract

In this research, we have compared and analyzed the value driven from theoretical equation of Boussinesque, Westergaard, Newmark and K$\"{o}$ogler with our experimental value from the model test on the underground stress distribution condition. As a result of conducting the Model Test, a change in the underground stress according to the loading was proven to be very similar to the tendency shown in the theories of Westergaard. A tendency of increasing in a straight line was shown in the underground stress according to the increase of loading. When compared to that of the theoretical equation, underground stress values were great until the depth of 15cm. However, after that depth, a tendency of showing smaller value than that of the theoretical equation was shown. Correlations between Moving Repeated Load (or) and Underground Stress ($\Delta\sigma$) show $\Delta\sigma\;=\; 0.009\cdot{\sigma}r-0.1$(depth 60 cm).

본 연구는 모형실험을 통하여 지중응력 분포상태를 기존의 Boussinesque, Westergaard, K$\"{o}$ogler, Newmark의 이론식값과 Model Test에 의한 실험값을 비교 검토하였다. 본 모형실험 결과 깊이별 재하하중에 의한 지중응력의 변화는 Westergaard이론과 가장 유사하게 나타났으며, 패하하중의 증가에 따라 지중응력은 거의 직선적으로 증가하는 경향을 보였고, 이론식과 비교하면 깊이 15cm 까지는 크게 나타났으나 그 이하의 깊이에서는 이론식 보다 작아지는 경향이 나타났다. 재하하중(${\sigma}r$)과 지중응력$\Delta\sigma$)의 상관관계식은 $\Delta\sigma\;=\; 0.009\cdot{\sigma}r-0.1$(깊이 60cm)로 나타났다.

Keywords

References

  1. 이상덕 (1997), '기본토질시험', 새론, pp.54-64
  2. Boussinesque, J. (1983), 'Application des potentials a L'Etude de L'Equilibre et du mouvement des solides Elastque', Gauthier-Villars, Paris
  3. Burmister, D. M. (1956), 'Stress and Displacement Characteristics of a Two-layer Rigid Base Soil system: Influence Diagrams and Practical Applications', Proc. HRB 35, pp.773-814
  4. Fadum, R. E. (1948), 'Influence Value for Estimating Stresses in Elastic Foundations', Proceeding 2nd International Conference. Soil Mech. and Found. Eng., Rotterdam, Vol.3, pp.77-84
  5. Harr, M. E. (1966), 'Foundations of Theoretical Soil Mechanics', McGraw-Hill, New York, pp.55-110
  6. Janbu, N., Bjerrum, L., and Kjaernsli, B. (1956), 'Veilendning ved Losning av Fundamenterings Oppgaver', NGI Publicatin, No.16, pp.93
  7. Kogler, F., and A. Scheidig (1927), 'Druckver Teilung im Baugrunde', Bautechnik, Berlin
  8. Newmark, N. M. (1942), 'Influence Charts for Computation of Stresses in Elastic Soil', Univ. Illinois Engineering Experiment. Station. Bulletin No.338
  9. Westergaard, H. M. (1938), 'A Problem of Elasticity Suggested by a Problem in Soil Mechanics: Soft Material Reinforced by Numerous Strong Horizontal Sheets', in Contribution to the Mechanics of Solids, Stephen Timoshenko 60th Anniversary Volume, MacMillian Co., New York