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Piles Subjected to Torsional Cyclic Load: Numerical Analysis

机译:桩对扭转循环载荷:数值分析

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Pile foundations supporting large structures (such as high-rise buildings, oil drilling platforms, bridges etc.) are often subjected to eccentric lateral load (in addition to the vertical loads) due to the action of wind, waves, high speed traffic and ship impacts etc. The eccentric lateral load, which is usually cyclic (repetitive) in nature, induces torsion in the pile foundation. This paper presents a numerical model based on boundary element approach to study the performance of a single pile subjected to the torsional cyclic load. The model is initially validated by comparing it with the experimental data available from the literature. Thereafter, the model has been utilised to conduct a parametric study to understand the influence of the torsional cyclic loading parameters on the axial pile capacity. The results indicated that the model is able to capture the degradation in the axial pile capacity due to the torsional cyclic loading with a reasonable accuracy. Moreover, the parametric study showed that the frequency, amplitude and number of cycles play a significant role in the torsional cyclic response of the pile. The present study is essential for the development of design guidelines for pile foundations subjected to torsional cyclic load.
机译:支撑大型结构的桩基础(如高层建筑,石油钻井平台,桥梁等)通常由于风,波,高速交通和船舶的作用而经常受到偏心横向载荷(除垂直载荷之外)影响等的偏心横向载荷自然界,通常是循环(重复),引起桩基中的扭转。本文提出了一种基于边界元方法的数值模型,研究了扭转循环负荷的单桩性能。最初通过将其与文献中可获得的实验数据进行比较来验证该模型。此后,已经利用该模型来进行参数研究以了解扭转循环加载参数对轴向桩容量的影响。结果表明,由于具有合理精度的扭转循环负载,该模型能够捕获轴向桩容量的劣化。此外,参数研究表明,循环频率,幅度和数量在桩的扭转循环响应中起着重要作用。本研究对于开发堆积循环载荷的桩基设计指南至关重要。

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