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1.湖南大学土木工程学院,湖南 长沙410082
2.湖南大学建筑安全与节能教育部重点实验室,湖南 长沙 410082
Received:02 December 2022,
Revised:2023-02-06,
Published:25 April 2024
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邹新军,胡建峰,杨紫健.上砂下黏地层中桩‑筒复合基础V‑H承载特性[J].防灾减灾工程学报,2024,44(02):415-425.
ZOU Xinjun,HU Jianfeng,YANG Zijian.Load‑bearing Characteristics of Pile‑bucket Composite Foundation under V‑H Loading in Sand Over Clay Soil Deposit[J].Journal of Disaster Prevention and Mitigation Engineering,2024,44(02):415-425.
邹新军,胡建峰,杨紫健.上砂下黏地层中桩‑筒复合基础V‑H承载特性[J].防灾减灾工程学报,2024,44(02):415-425. DOI: 10.13409/j.cnki.jdpme.20221202001.
ZOU Xinjun,HU Jianfeng,YANG Zijian.Load‑bearing Characteristics of Pile‑bucket Composite Foundation under V‑H Loading in Sand Over Clay Soil Deposit[J].Journal of Disaster Prevention and Mitigation Engineering,2024,44(02):415-425. DOI: 10.13409/j.cnki.jdpme.20221202001.
海上风机基础不仅受自重等竖向力
V
作用,也因水流、波浪和风等影响而承受水平荷载
H
。为探讨上砂下黏地层中一种由单桩和吸力筒组成的新型海上风机桩‑筒复合基础受
V‑H
组合作用时的承载特性,自主设计完成了一系列室内桩‑筒复合基础
V‑H
组合加载模型试验,获得不同组合参数下桩‑筒复合基础的荷载‑位移曲线和桩身弯矩分布曲线,并绘制出
V‑H
承载力包络线。在此基础上,采用ABAQUS建立了上砂下黏地层中桩‑筒复合基础三维数值分析模型,经模型验证与参数分析,进一步讨论了砂土厚度、筒径、筒高以及加载高度等参数对桩‑筒复合基础承载特性的影响曲线,并拟合出桩‑筒复合基础承载力简化计算公式,分析结果表明:桩‑筒复合基础能显著提高桩身水平承载力,增幅达30%~90%,且增加筒径比增加筒高更有利于提高基础水平承载力;上部砂土层较厚时,桩‑筒复合基础存在一个使复合基础水平承载力达到最大的预加竖向荷载最佳值,其值随不同载荷工况在(0.4~0.7)
V
ult
范围内变化。
Offshore wind turbine foundations are subjected to not only vertical forces (
V
)
such as dead weight
but also horizontal loads (H) under the influence of currents
waves
and wind. In order to explore the load-bearing behavior under
V‑H
combined loading of a new type of offshore wind turbine composite foundation
which was composed of a single pile and suction bucket in sand over clay soil deposits
a series of indoor
V
-
H
combined loading model tests for the pile-bucket composite foundation were independently designed and completed. Load-displacement curves and bending moment distribution curves for the pile-bucket composite foundation under different combined parameters were obtained
and
V
-
H
bearing capacity envelopes were drawn. Based on this
ABAQUS was used to establish a three-dimensional numerical analysis model for pile-bucket composite foundation in sand over clay soil deposits. After model validation and parameter analysis
the effects of sand layer thickness
bucket diameter
bucket height
and loading height on its bearing characteristics were investigated. A simplified formula for calculating the bearing capacity of the pile-bucket composite foundation was developed. The results showed that the pile-bucket composite foundation could significantly improve the horizontal bearing capacity of the pile by about 30%~90%. Moreover
increasing the bucket diameter was more efficient in improving its horizontal bearing capacity than increasing the bucket height. For thicker upper sand layers
an optimal pre-applied vertical load existed that maximized the horizontal bearing capacity of the composite foundation
and it varied in the range of 0.4~0.7
V
ult
under different loading cases.
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