首页> 外文期刊>Soils and foundations >UPLIFT CAPACITY OF BELLED AND MULTI-BELLED PILES IN DENSE SAND
【24h】

UPLIFT CAPACITY OF BELLED AND MULTI-BELLED PILES IN DENSE SAND

机译:密沙带状和多带状桩的承载能力

获取原文
           

摘要

References(16) This paper evaluates the uplift capacity of belled and multi-belled piles in dense sand. A two-dimensional distinct element (DE) analysis was applied in pullout tests on single piles to investigate the uplift resistance of the piles, the soil behavior around the piles, and the interaction between the soil and the pile surface. It was observed from the DE analysis that the soil mass adjacent to the projections of the belled and multi-belled piles moved vertically, and that the soil movements leaned slightly with the occurrence of relative displacement between the soil and the pile surface. A theoretical solution for predicting the uplift capacity of belled and multi-belled piles was derived from an upper bound limit analysis based on the soil movements in the DE analysis. The solution was able to reproduce the ultimate uplift resistance in the DE analysis using the friction angles in the aggregates and on the pile surface that were evaluated from a simulation of direct and simple shear tests. In addition, a continuity equation that satisfied the relationship between the displacement vector of the soil mass adjacent to the projections and the change in volume around the soil mass was proposed for predicting the uplift capacity of actual piles under axisymmetric conditions. The theoretical solution obtained with the continuity equation was in good agreement with the pullout resistance of the belled and multi-belled piles in centrifuge model tests and full-scale tests conducted in situ.
机译:参考文献(16)本文评估了钟形和多钟形桩在稠密沙子中的抗拔承载力。将二维离散元(DE)分析应用于单桩的拉拔试验中,以研究桩的抗拔力,桩周围的土性以及桩与土之间的相互作用。从DE分析中可以看出,与钟形和多钟形桩的凸起相邻的土体垂直移动,并且随着土与桩表面之间的相对位移,土的运动略有倾斜。基于DE分析中的土壤运动,从上限分析的基础上,得出了用于预测钟形和多钟形桩的抗拔承载力的理论解。该解决方案能够使用直接和简单剪切试验的模拟评估的集料和桩表面上的摩擦角,在DE分析中再现极限抗拔力。此外,提出了一个连续方程,该方程满足了邻近凸起的土体位移矢量与土体周围体积变化之间的关系,以预测轴对称条件下实际桩的抗拔能力。用连续性方程得出的理论解与钟形和多钟形桩在离心模型试验和现场实测中的抗拔性很好。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号