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黏土中桩基周围最大冲刷深度预测公式对比分析

Comparative Analyses of Prediction Formulas for Maximum Scour Depth around Monopile Foundations in Clay Soils

  • 摘要:
    目的 在海洋和河流环境中,桩基局部冲刷问题可能导致桩基结构的严重损坏,进而造成巨大的经济损失和人员伤亡。过去几十年,许多学者提出了多种预测砂土中局部冲刷深度的模型,并对模型的有效性开展了系统的评估。然而,黏土中桩基周围局部冲刷研究却相对较少。为弥补该空缺,文章旨在利用实验数据对现有的预测模型进行对比,分析其合理性与适用性,进而为工程建设提供指导。
    方法 整理了337 组黏土中的桩基局部冲刷深度实验数据,并对13 组不同的预测模型进行了对比分析,以探讨黏土含量、含水量、弗劳德数(Fr)和雷诺数(Rp)等因素对冲刷深度的影响,并依据对比结果筛选出几组预测精度高,适用性强的模型。
    结果 不同预测模型之间存在显著差异;黏土含量和弗劳德数对冲刷深度的影响较大,而含水量的影响则相对较小;雷诺数由于受尺度效应和流速的共同影响,其在预测模型中的适用性有限。
    结论 文章加深了对黏土中桩基局部冲刷现象的理解,为工程实践中选用更为精确的冲刷深度预测模型提供了指导。

     

    Abstract:
    Objective In marine and river environments, local scour around pile foundations can lead to severe damage to the structures, resulting in significant economic losses and potential casualties. Over the past few decades, many researchers have proposed various models to predict scour depth in sandy soils and have systematically evaluated their effectiveness. However, studies on local scour around pile foundations in clay soils are relatively limited. To address this gap, the aim of this article is to compare existing predictive models using experimental data, analyze their rationality and applicability, and provide guidance for engineering construction.
    Method This study compiled experimental data from 337 cases of local scour around piles in clay and conducted comparative analyses of 13 different predictive models to explore the impact of clay content, water content, Froude number (Fr) and Reynolds number (Rp) on scour depth. Based on the comparison results, several models with high predictive accuracy and strong applicability were selected.
    Result There are significant differences among various prediction models; clay content and Froude number have a substantial impact on the depth of scour, whereas the effect of water content is relatively minor. The applicability of Reynolds number in prediction models is limited due to its dependence on scale effects and flow velocity.
    Conclusion This paper enhances the understanding of local scour phenomena around pile foundations in clay soils, and offers guidance for selecting more accurate scour depth prediction models in engineering practices.

     

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