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Dynamic pile impedances for fixed-tip piles

机译:固定桩的动态桩阻抗

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摘要

The behavior of a laterally loaded pile with fixed-tip boundary condition (i.e., displacement and rotation, are perfectly restrained) is evaluated using a recently proposed, improved Tajimi-type model. The model performance in both, static and dynamic regime is first validated against rigorous finite element solutions and subsequently compared with Winkler model results for a selected range of pile-soil system parameters. In addition, pile impedances for fixed-tip piles are compared with previously proposed impedance expressions for hinged-tip piles. Results indicate that pile tip fixity has moderate impact on the pile stiffness in rotation but show stronger influence for pile stiffness in swaying and cross-swaying. The effect of tip fixity on pile impedances diminishes when piles are longer than approximately ten pile diameters. The proposed expressions for damping were evaluated across a wide range of frequencies, and damping was found to be most pronounced in rotation across the entire spectrum of pile-soil stiffness ratios examined. Winkler based formulations from literature almost exclusively over-predict damping for fixed tip piles.
机译:使用最近提出的改进的Tajimi型模型评估了具有固定尖端边界条件(即位移和旋转受到完美约束)的侧向荷载桩的行为。首先针对严格的有限元解验证了静态和动态状态下的模型性能,然后将其与Winkler模型结果进行了比较,以选择桩土系统参数的选定范围。另外,将固定尖桩的桩阻抗与先前提出的铰链尖桩的阻抗表达式进行了比较。结果表明,桩尖固定性对旋转桩的刚度有中等影响,但对摇摆和交叉摇摆的桩刚度显示出更大的影响。当桩长超过大约十个桩直径时,桩头固定性对桩阻抗的影响会减小。在广泛的频率范围内评估了拟议的阻尼表达式,发现在所研究的桩土刚度比的整个频谱中,阻尼在旋转中最为明显。来自文献的基于Winkler的公式几乎完全预测了固定桩的阻尼。

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