ISSN 1003-8035 CN 11-2852/P

    斜坡地形桩基础的水平承载性能研究综述

    A review on lateral bearing performance of pile foundations in sloping ground

    • 摘要: 随着输电线路在复杂地形中的广泛应用,斜坡地形桩基础的设计与稳定性研究成为重要课题。本文系统综述了近年来斜坡地形桩基础在水平荷载作用下的理论研究、试验研究及数值分析进展。在理论方面,弹性地基理论(如m法)、弹塑性分析法(如p-y曲线法)、楔形体理论及极限分析法为斜坡桩基承载力计算提供了多样化计算模型。试验研究揭示了坡角、桩基位置及土体性质对地基反力系数(m值)和承载力的影响规律。数值分析进一步量化了斜坡几何参数和荷载条件对桩基响应的影响,并探讨了地震荷载、桩径变化及弃土堆填等复杂工况下的输电塔桩基性能退化机制。本文的综述成果可为斜坡地形输电线路桩基础的设计与优化提供理论依据和工程参考,对保障山区电力设施稳定性具有重要意义。

       

      Abstract: With the widespread application of transmission lines in complex terrains, the design and stability of pile foundations in sloping ground have become important research topics in geotechnical engineering. This paper systematically summarizes recent progress in theoretical, experimental, and numerical studies of pile foundations under lateral loads in sloping ground. From the theoretical perspective, elastic foundation theories (particularly the m-method), elastoplastic analysis methods (especially the p-y curve method), wedge theory, and limit analysis methods provided a comprehensive framework for evaluating the lateral bearing capacity of pile foundations in sloping ground. Experimental studies demonstrated the significant impact of slope inclination, pile position, and soil properties on the foundation reaction coefficient (m-value) and bearing capacity. Numerical analyses further quantified the influence of slope geometric parameters and loading conditions on the response of pile foundations, while exploring the degradation mechanisms of pile performance for transmission lines under complex conditions, such as seismic loads, variations in pile diameter, and waste soil backfilling. The findings of this review can provide a theoretical basis and engineering references for the design and optimization of pile foundations for transmission lines in sloping ground, which is significant importance for ensuring the stability of power facilities in mountainous areas.

       

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