Experimental and Numerical Analysis of Laterally Loaded Single- and Double-Paddled H-Piles in Clay

Abdelrahman Abouziad, M. H. El Naggar
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Abstract

An efficient foundation system of single- or double-paddled H-piles (PHPs), which comprises steel H-piles fitted with specially configured steel plates (paddles), is proposed to support sound walls subjected to wind loading. The lateral responses of single-paddled (SPHPs) and double-paddled H-piles (DPHPs) installed in clay is evaluated using a comprehensive assessment of the foundation performance via a full-scale lateral load testing program, alongside extensive three-dimensional (3D) nonlinear finite element (FE) analysis. The comparison between the calculated and measured responses of the PHPs demonstrates that the developed numerical model accurately depicts the response of the PHPs under lateral load. The validated numerical model is then used to evaluate the effect of the soil consistency on the lateral response and capacity of the PHPs. The influence of the paddles’ configuration on the lateral response and capacity of the PHPs is also evaluated. Furthermore, the change in the PHP lateral stiffness due to adding a second paddle is also examined. Finally, the influence of the plates on the surrounding soil is investigated by analyzing the formation of the strain field around the pile and evaluating the extent of the soil influence zone at different plate-width-to-pile-flange-width ratios (Wp/Wf). The result of this study indicates that adding plates contributes significantly to the lateral capacity of PHPs in clay and reduces the maximum bending moment. The parametric study reveals that the top 5–6 Wp of the soil have a significant effect on the lateral response of the proposed H-pile. Based on the outcomes of the field tests and numerical analysis, optimal geometrical parameters for paddles are proposed.
粘土中横向加载单桩和双桩工字桩的实验和数值分析
我们提出了一种高效的单桩或双桩工字桩(PHPs)地基系统,该系统由装有特殊配置钢板(桨叶)的钢制工字桩组成,用于支撑承受风荷载的隔音墙。通过全尺寸横向荷载测试程序对地基性能进行综合评估,并结合大量的三维(3D)非线性有限元(FE)分析,对安装在粘土中的单桨叶(SPHPs)和双桨叶 H 桩(DPHPs)的横向响应进行了评估。PHP 的计算响应与测量响应之间的比较表明,所开发的数值模型准确地描述了 PHP 在横向荷载作用下的响应。经过验证的数值模型随后被用于评估土壤稠度对 PHPs 横向响应和承载能力的影响。还评估了桨叶配置对 PHP 的横向响应和承载能力的影响。此外,还研究了增加第二个桨叶对 PHP 侧向刚度的影响。最后,通过分析桩周围应变场的形成以及评估不同板宽与桩翼缘板宽比(Wp/Wf)下土壤影响区的范围,研究了板对周围土壤的影响。研究结果表明,在粘土中增加钢板可显著提高 PHP 的横向承载力,并降低最大弯矩。参数研究表明,土壤顶部 5-6 Wp 对拟议的 H 型桩的横向响应有显著影响。根据现场试验和数值分析的结果,提出了桨叶的最佳几何参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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