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首页> 外文期刊>Journal of bridge engineering >Flexible Pile Head in Jointless Bridges: Design Provisions for H-Piles in Cohesive Soils
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Flexible Pile Head in Jointless Bridges: Design Provisions for H-Piles in Cohesive Soils

机译:无缝桥梁中的柔性桩头:粘性土中的H型桩设计规定

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摘要

Several methods are used to increase the lateral displacement capacity of the piles supporting jointless bridges, the most effective of which are predrilled holes and a flexible pile-cap connection. Depending on soil type and required displacement capacity, these two methods can be combined. This paper discusses a simple study carried out to demonstrate the efficiency of the flexible-head condition, and a finite-element analysis conducted on a prestressed pile. The model was first calibrated with the test results, and then a flexible detail was applied to the model. The results of this part of the study show that a flexible connection can increase the displacement capacity of embedded piles. Finally, nonlinear analyses were conducted using simulation software for compact HP piles. The results of these analyses revealed that strong axis bending results in larger displacement capacity compared to weak axis bending, although the stiffness is smaller in the latter case. Provisions are also developed to account for partial fixity. The paper concludes by providing design provisions for H-piles for the application of a pinned head detail that will allow the use of jointless bridges in conjunction with longer bridge lengths.
机译:有几种方法可用来增加支撑无接缝桥梁的桩的横向位移能力,其中最有效的方法是预先钻孔和柔性桩帽连接。根据土壤类型和所需的位移能力,可以将这两种方法结合使用。本文讨论了一个简单的研究,以演示柔性头条件的效率,并对预应力桩进行了有限元分析。首先使用测试结果对模型进行校准,然后将灵活的细节应用于模型。这部分研究的结果表明,柔性连接可以增加嵌入式桩的位移能力。最后,使用模拟软件对紧凑型高压桩进行了非线性分析。这些分析的结果表明,与弱轴弯曲相比,强轴弯曲具有更大的位移能力,尽管在后一种情况下刚度较小。还制定了解决部分固定性的规定。最后,本文提供了H型桩的设计规定,以适用于钉扎式头部细节,这将允许结合使用无接缝桥和更长的桥长度。

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