New Design Criteria for Long, Large-Diameter Bored Piles in Near-Shore Interbedded Geomaterials: Insights from Static and Dynamic Test Analysis

IF 3.1 3区 工程技术 Q2 CONSTRUCTION & BUILDING TECHNOLOGY Buildings Pub Date : 2024-07-23 DOI:10.3390/buildings14082268
N. Elsakhawy, Eslam Ibrahim, Khalid M. Elzahaby, Marwa Nabil
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Abstract

This paper presents an analysis of long, large-diameter bored piles’ behavior under static and dynamic load tests for a megaproject located in El Alamein, on the northern shoreline of Egypt. Site investigations depict an abundance of limestone fragments and weak argillaceous limestone interlaid with gravelly, silty sands and silty, gravelly clay layers. These layers are classified as intermediate geomaterials, IGMs, and soil layers. The project consists of high-rise buildings founded on long bored piles of 1200 mm and 800 mm in diameter. Forty-four (44) static and dynamic compression load tests were performed in this study. During the pile testing, it was recognized that the pile load–settlement behavior is very conservative. Settlement did not exceed 1.6% of the pile diameter at twice the design load. This indicates that the available design manual does not provide reasonable parameters for IGM layers. The study was performed to investigate the efficiency of different approaches for determining the design load of bored piles in IGMs. These approaches are statistical, predictions from static pile load tests, numerical, and dynamic wave analysis via a case pile wave analysis program, CAPWAP, a method that calculates friction stresses along the pile shaft. The predicted ultimate capacities range from 5.5 to 10.0 times the pile design capacity. Settlement analysis indicates that the large-diameter pile behaves as a friction pile. The dynamic pile load test results were calibrated relative to the static pile load test. The dynamic load test could be used to validate the pile capacity. Settlement from the dynamic load test has been shown to be about 25% higher than that from the static load test. This can be attributed to the possible development of high pore water pressure in cohesive IGMs. The case study analysis and the parametric study indicate that AASHTO LRFD is conservative in estimating skin friction, tip, and load test resistance factors in IGMs. A new load–settlement response equation for 600 mm to 2000 mm diameter piles and new recommendations for resistance factors φqp, φqs, and φload were proposed to be 0.65, 0.70, and 0.80, respectively.
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近岸互层岩土材料中长距离、大直径钻孔灌注桩的新设计标准:静态和动态试验分析的启示
本文分析了位于埃及北部海岸线阿拉曼的一个大型项目在静载和动载试验下大直径钻孔长桩的行为。现场调查显示,大量石灰岩碎块和软弱的箭状石灰岩夹杂在砾质粉砂层和淤泥质砾质粘土层中。这些地层被归类为中间岩土材料(IGM)和土层。该项目由高层建筑组成,基础是直径分别为 1200 毫米和 800 毫米的长钻孔桩。本研究共进行了 44 次静态和动态压缩载荷试验。在桩基测试过程中,发现桩基的荷载沉降行为非常保守。在两倍设计荷载下,沉降量不超过桩直径的 1.6%。这表明现有的设计手册没有为 IGM 层提供合理的参数。这项研究旨在调查不同方法在确定 IGM 钻孔桩设计荷载时的效率。这些方法包括统计方法、静态桩载荷试验预测方法、数值方法以及通过案例桩波浪分析程序 CAPWAP(一种计算桩轴摩擦应力的方法)进行的动态波浪分析。预测的极限承载力为桩身设计承载力的 5.5 到 10.0 倍。沉降分析表明,大直径桩表现为摩擦桩。桩的动态荷载试验结果已根据静态桩荷载试验进行了校准。动荷载试验可用于验证桩的承载力。结果表明,动荷载试验产生的沉降比静荷载试验产生的沉降高出约 25%。这可归因于粘性土工格室中可能产生的高孔隙水压力。案例分析和参数研究表明,AASHTO LRFD 在估算 IGM 的表皮摩擦、尖端和荷载试验阻力系数时是保守的。针对直径为 600 毫米至 2000 毫米的桩提出了新的荷载-沉降响应方程,并对阻力系数 φqp、φqs 和 φload 分别提出了 0.65、0.70 和 0.80 的新建议。
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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来源期刊
Buildings
Buildings Multiple-
CiteScore
3.40
自引率
26.30%
发文量
1883
审稿时长
11 weeks
期刊介绍: BUILDINGS content is primarily staff-written and submitted information is evaluated by the editors for its value to the audience. Such information may be used in articles with appropriate attribution to the source. The editorial staff considers information on the following topics: -Issues directed at building owners and facility managers in North America -Issues relevant to existing buildings, including retrofits, maintenance and modernization -Solution-based content, such as tips and tricks -New construction but only with an eye to issues involving maintenance and operation We generally do not review the following topics because these are not relevant to our readers: -Information on the residential market with the exception of multifamily buildings -International news unrelated to the North American market -Real estate market updates or construction updates
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