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Effects of Clay Creep on Long-Term Load-Carrying Behaviors of Bored Piles: Aiming at Reusing Existing Bored Piles

机译:粘土蠕变对钻孔桩长期承载行为的影响:旨在重新钻取现有钻孔桩

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摘要

An analytical procedure is presented for assessing the long-term load-carrying behavior of bored piles in clay, where the plastic volumetric strain of surrounding clay caused by creep is estimated by an advanced elasto-viscoplastic constitutive model. Two key soil parameters, the undrained shear strength and the shear modulus, which govern the load-carrying behavior of bored piles in clay, are determined from the definition of the quasi-overconsolidation ratio and the concept of the critical state theory-based Cam-clay model. The long-term load-carrying capacity of bored piles is evaluated based on the total stress method. Hyperbolic load-transfer models are developed with proper incorporation of the two developed soil parameters to predict the long-term load-settlement behaviors of the bored pile. The proposed framework is validated by predicting a pile field test on an existing bored pile (about 30 years) in clay, which was recently performed by the authors in Pudong New Area, Shanghai, and field static load tests on two single bored piles conducted by other researchers. Comprehensive parametric studies are conducted to explore the effects of secondary compression index and in situ soil properties on long-term load-carrying behavior of bored piles. The proposed procedure is expected to provide useful guidance for estimating the load-carrying behavior of existing bored piles in clay and take the ultimate aim of reusing them in practice.
机译:提出了一种分析方法,用于评估粘土中钻孔桩的长期载荷行为,其中由蠕变引起的周围粘土的塑料体积菌株通过先进的弹性粘性构成型模型估算。两个关键的土壤参数,不介绍的剪切强度和剪切模量,该剪切强度和剪切模量控制粘土中的钻孔桩的承载行为,从准覆盖率的定义和基于临界状态理论的凸轮的概念的定义确定粘土模型。基于总应力法评估钻孔桩的长期承载能力。双曲线负载转移模型是通过正确掺入两种开发的土壤参数而开发的,以预测钻孔桩的长期负荷沉降行为。通过预测粘土上现有钻孔桩(约30年)的桩田试验,验证了拟议的框架,该粘土最近由浦东新区,上海和现场静载试验在两台钻孔桩上进行的作者进行其他研究人员。进行综合参数研究以探讨二次压缩指数及其原位土壤性质对钻孔桩的长期载荷行为的影响。建议的程序预计为估计粘土中现有无聊桩的承载行为提供有用的指导,并采取在实践中重新使用它们的最终目标。

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