Influence of the head fixity adjustment of existing piles on the lateral load response of new piles

IF 4.2 1区 工程技术 Q1 ENGINEERING, GEOLOGICAL Geotechnique Pub Date : 2023-11-09 DOI:10.1680/jgeot.22.00325
Hongjiang Li, Songyu Liu, Liyuan Tong, Dingwen Zhang
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Abstract

The reuse of existing piles is a significant path to achieving low-carbon, resilient, and sustainable urban construction. However, some key issues in this area remain unresolved, especially with regard to the lateral interaction of new and existing piles. This study used centrifuge tests and numerical simulations to investigate the influence of the head fixity adjustment of existing piles on the lateral load response of new piles. The lateral load responses of new piles were compared for four conditions of the heads of existing piles, and the contributions of existing piles to new piles were examined. An extensive parametric study was conducted to quantify the relative contributions of the existing pile head fixity to the lateral load response of new piles for different variables, including new-existing pile spacings, displacements of new piles, restraints of heads of new piles, and soil properties. Finally, a practical method was developed for the design of laterally loaded new piles that considers the head fixity of existing piles. The results of this study provide a feasible way to enhance the contributions of existing piles to the lateral load responses of new piles through the adjustment of the fixities of existing pile heads.
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既有桩桩头固定调整对新桩侧荷载响应的影响
现有桩的再利用是实现低二氧化碳、弹性和可持续城市建设的重要途径。然而,该领域的一些关键问题仍未得到解决,特别是关于新桩和现有桩的横向相互作用。本文采用离心试验和数值模拟的方法,研究了既有桩的桩头固定调整对新桩侧力响应的影响。对比了4种既有桩顶条件下新桩的侧力响应,并考察了既有桩对新桩的贡献。通过广泛的参数研究,量化了新桩与既有桩间距、新桩位移、新桩顶约束和土壤性质等不同变量下,现有桩头固定性对新桩横向荷载响应的相对贡献。最后,提出了一种考虑既有桩顶固结的新桩横向荷载设计实用方法。研究结果为通过调整既有桩头的固定来提高既有桩对新桩横向荷载响应的贡献提供了一条可行的途径。
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来源期刊
Geotechnique
Geotechnique 工程技术-地球科学综合
CiteScore
9.80
自引率
10.30%
发文量
168
审稿时长
7 months
期刊介绍: Established in 1948, Géotechnique is the world''s premier geotechnics journal, publishing research of the highest quality on all aspects of geotechnical engineering. Géotechnique provides access to rigorously refereed, current, innovative and authoritative research and practical papers, across the fields of soil and rock mechanics, engineering geology and environmental geotechnics.
期刊最新文献
Laboratory investigation on the single particle crushing strength of carbonate gravel incorporating size and shape effects Liquefaction susceptibility of clayey sands under saturated and partially saturated conditions Effect of strain-softening and strength anisotropy on the undrained bearing capacity of non-associated clay Influence of the head fixity adjustment of existing piles on the lateral load response of new piles Matching of crushed highly decomposed granite particles using 3D SHOT descriptors
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