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牛琪瑛, 刘建君, 刘少文, 张明, 郭英. 碎石桩与水泥土桩加固液化地基的数值模拟研究[J]. 岩土工程学报, 2011, 33(zk1): 481-484.
引用本文: 牛琪瑛, 刘建君, 刘少文, 张明, 郭英. 碎石桩与水泥土桩加固液化地基的数值模拟研究[J]. 岩土工程学报, 2011, 33(zk1): 481-484.
NIU Qi-ying, LIU Jian-jun, LIU Shao-wen, ZHANG Ming, GUO Ying. Numerical simulation of liquefiable sandy ground reinforced by gravel piles and soil-cement piles[J]. Chinese Journal of Geotechnical Engineering, 2011, 33(zk1): 481-484.
Citation: NIU Qi-ying, LIU Jian-jun, LIU Shao-wen, ZHANG Ming, GUO Ying. Numerical simulation of liquefiable sandy ground reinforced by gravel piles and soil-cement piles[J]. Chinese Journal of Geotechnical Engineering, 2011, 33(zk1): 481-484.

碎石桩与水泥土桩加固液化地基的数值模拟研究

Numerical simulation of liquefiable sandy ground reinforced by gravel piles and soil-cement piles

  • 摘要: 采用三维有限差分程序 FLAC3D ( Fast Lagrangian Analysis of Continua )对未加固、碎石桩加固和水泥土桩加固的液化砂土地基进行数值模拟,探讨了碎石桩与水泥土桩加固液化砂土地基的抗液化性能。 研究表明碎石桩抗液化能力显著,而 水泥土桩抗液化能力十分有限 , 证实了 碎石桩加固液化砂土地基的抗液化效果 与桩 土共同作用的排水效应 直接相关 。

     

    Abstract: Natural liquefiable sandy ground and liquefiable sandy ground improved by gravel piles and soil cement piles under earthquake action are numerically simulated by three-dimensional finite difference program “FLAC3D” (Fast Lagrangian analysis of continua), and anti-liquefaction characteristics of gravel piles and soil-cement piles in improving the liquefiable sandy ground are studied. The analysis shows that the gravel piles have remarkable effect to resist liquefaction, while the cement-soil piles have limit effect to resist liquefaction. It is also confirmed that the resisting liquefaction effects and the drainage effects of pile-soil are directly correlative .

     

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