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Predicting the resistance profile of a spudcan penetrating sand overlying clay

机译:预测覆盖在粘土上的钉桩穿透沙子的阻力曲线

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Assessment of the risk of punch-through failure of spudcan foundations on sand overlying clay requires prediction of the full penetration resistance profile, from touchdown and through punch-through to equilibrium of the vertical resistance at depth in the underlying clay layer. This study uses the Coupled Eulerian-Lagrangian approach, a large deformation finite element analysis method, to model the complete penetration resistance profile of a spudcan on sand overlying clay. The sand is modeled using the Mohr-Coulomb model, while the clay is modeled using a modified Tresca model to account for strain softening. The numerical method is then used to simulate a series of spudcan penetration tests, performed in a geotechnical centrifuge, on medium dense sand overlying clay. The punch-through behavior observed in the experiments is replicated, and the penetration resistance profiles from numerical analyses are generally a reasonable match to the experimental measurements. The influences of the sand layer height to foundation diameter ratio, sand-clay interface shear strength, and strength gradient in clay on the penetration resistance profiles are explored in a complementary parametric study. The penetration resistance in the underlying clay layer is well predicted using a simple linear expression for the bearing capacity factor for the spudcan and underlying sand plug. This expression is combined with an existing failure stress dependent model for predicting peak resistance to form a simplified method for prediction of the full penetration resistance profile. This new method provides estimates of the vertical penetration that the spudcan will run during the punch-through event. It is validated against both medium dense and dense sand centrifuge tests.
机译:评估覆盖在沙子上的黏土上的钉桩基础穿透失败的风险需要预测整个渗透阻力曲线,从接地和穿透直至下层粘土层深度的垂直阻力达到平衡。这项研究使用大变形有限元分析方法Eulerian-Lagrangian耦合方法来模拟桩脚在覆盖砂土上的完整抗渗透性。使用Mohr-Coulomb模型对砂进行建模,而使用改进的Tresca模型对粘土进行建模以说明应变软化。然后,使用数值方法来模拟在土工离心机中对覆盖在中等密度沙子上的黏土进行一系列的桩墩渗透测试。复制在实验中观察到的穿通行为,并且来自数值分析的抗穿透性概况通常与实验测量值合理匹配。在补充的参数研究中,探讨了砂层高度与地基直径之比,砂土界面剪切强度以及强度梯度对渗透阻力分布的影响。使用简单的线性表达式,可以预测地下桩和下层砂塞的承载力因子,从而很好地预测了下层粘土层的抗渗透性。该表达式与现有的依赖于应力应力的破坏模型相结合,用于预测峰值阻力,从而形成了一种用于预测全穿透阻力曲线的简化方法。这种新方法可以估算穿刺事件期间桩脚将运行的垂直穿透力。已针对中等密度和高密度砂离心试验进行了验证。

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