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샌드 드레인으로 개량된 점토지반의 내부거동에 대한 압밀변형 메커니즘

Mechanism of Consolidation Displacement on Internal Behavior of Clay Ground Improved by Sand Drain

  • 백원진 (일본 야마구치대학 공학부 사회건설공학과)
  • 발행 : 2006.11.30

초록

In this study, the large scaled model test improved by sand drain was carried out to clarify the internal behavior of the three-dimensional consolidation under different secondary consolidation periods. From the results of model test, the void ratio in the undrained side was lager than in the drained side. In addition, the unconfined compressive strength in the long-term consolidated specimen was larger than that in the short-term consolidated one. It was also found that the unconfined compressive strength was larger in the drained side than in the undrained side. These reasons are considered to be due to the large effective stress by quick pore water pressure dissipation by the short drainage distance in the drained side. Furthermore, in order to investigate the three-dimensional consolidation behavior of clay ground improved by the vertical drain method, the numerical analysis obtained from the three-dimensional elasto-viscous consolidation theory proposed by author (2006) were compared with the test results. It was found that during the three-dimensional consolidation process not only vertical displacement but also radial displacement occurs inside the specimen.

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참고문헌

  1. Barron, R. A., 1948, Consolidation of finegrained soils by drain wells, Transactions ASCE, Vol. 113, No. 2346, pp. 718-742
  2. Baek, W., Moriwaki, T. and Kikuchi, Y., 2002, Measurement and interpretation of three-dimensional consolidation behavior in clayey ground improved by vertical drains, Ground Engineering (Journal of Chugoku Branch, JGS) , Vol. 20, No. 1, pp. 71-79 (in Japanese)
  3. Baek, W. and Moriwaki, T., 2004, Internal behavior of clayey ground improved by vertical drains in 3D consolidation process, Soils and Foundations, Vol. 44, No. 3, pp. 25-37
  4. Baek, W., Moriwaki, T. and Sasaki, Y., 2006, Numerical analyses on consolidation of clayey ground improved by vertical drain system based on 3-D Elasto-Viscous model, Soils and Foundations, Vol. 46, No. 2, pp. 159-172 https://doi.org/10.3208/sandf.46.159
  5. Yoshikuni, H., Kusakabe, O., Hirao, T. and Ikegami, S., 1994, Elasto-Viscous modeling of time-dependent behavior of clay, Proc. of the 13th ICSMFE, New Delhi, India, Vol. 1, pp. 417-420
  6. Yoshikuni, H., Okada, M., Ikegami, S. and Hirao, T., 1995, One-dimensional consolidaton analysis based on an elasto-viscous liquid model, Proc. of the International Symposium on Compression and Consolidation of Clayey Soils, IS-Hiroshima'95, pp. 233-238
  7. 龜井健使, 常田亮, 1993, 海成粘性上の一 軸縮結果に及ぼす寸法果の影響, 土と基礎, Vol. 41, No. 11, pp. 41-46
  8. 藤原照辛, 三上武子, 小泉和廣, 2006, 小型供誠体 を用いた一軸縮誠驗の强度特性, 上と基礎, Vol. 54, No. 8, pp. 8-10
  9. 日本道路公誠驗所 , 上本誠驗室, 1986, 軟弱地盤における高涑道路盛上の沈下特性にする硏究
  10. 日本地盤工學會, 1990, 上質誠驗の方法と說, 土工學會中國支部論文報告, pp. 289-308
  11. バ-チカルドレ-ンの有性にする硏究員會, 1988, バ-チカルドレ-ンの有性にする硏究 土工學會中國支部論文報告, Vol. 6, No. 1, pp.121-141
  12. 住亘博, 吉國博, 1993, サンドドレ-ン改良地盤の密メカニズムの孝察, 土本學會論文, No. 463/III-22, pp. 65-74