用于横向装载斗式地基的温克勒弹簧

IF 4 2区 工程技术 Q1 ENGINEERING, CIVIL
Xinyi Huang, Rui He
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引用次数: 0

摘要

桶形基础被认为是环境友好型基础。它们的刚度决定了支撑式海上风力发电机的共振频率和疲劳寿命。本文提出了不同土型条件下横向荷载桶形基础刚度的严格三维弹性解。首先从解析模型中得到作用于铲斗顶部的集总弹簧刚度和沿铲斗分布的土壤弹簧刚度的精确分布。然后拟合了集总弹簧刚度的封闭公式,并与已有的研究结果进行了验证。为了便于工程应用,采用等效功法将分布的土体弹簧刚度平均为均匀分布。最后提出并校准了两种简化的Winkler模型:一种是弹簧刚度沿桶体均匀分布,另一种是将分布的Winkler弹簧分成以旋转中心为界的两部分。无量纲温克勒弹簧主要与铲斗长径比、土体泊松比和荷载高度有关。结果表明,对于桶形基础,单靠侧土弹簧(如桩侧p - y弹簧)是不够的。建议采用两部分p - y弹簧和均匀旋转弹簧相结合的方法来获得准确的桶形基础响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Winkler springs for laterally loaded bucket foundations
Bucket foundations are considered to be environmentally friendly foundations. Their stiffness determines the resonant frequencies and fatigue life of the supported offshore wind turbines. This study proposes a rigorous three-dimensional (3D) elastic solution for the stiffness of laterally loaded bucket foundations in different soil profiles. The lumped spring stiffness acting on the top of the bucket and the exact distribution of the distributed soil spring stiffness along the bucket are first obtained from the analytical model. Closed-form formulae for the lumped spring stiffness are then fitted and verified with the existing studies. To facilitate the engineering application, the distributed soil spring stiffness is then averaged to a uniform distribution using the equivalent work method. Two types of simplified Winkler models are finally proposed and calibrated: one in which the spring stiffness is uniformly distributed along the bucket, and the other in which the distributed Winkler springs are divided into two parts bounded by the centre of rotation. The non-dimensional Winkler springs are mainly related to the bucket aspect ratio, the soil Poisson's ratio and the loading height. It is shown that the lateral soil springs alone, as py springs for piles, are not sufficient for bucket foundations. The combined two-part py springs and uniform rotational springs are suggested to obtain accurate bucket foundation responses.
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来源期刊
Marine Structures
Marine Structures 工程技术-工程:海洋
CiteScore
8.70
自引率
7.70%
发文量
157
审稿时长
6.4 months
期刊介绍: This journal aims to provide a medium for presentation and discussion of the latest developments in research, design, fabrication and in-service experience relating to marine structures, i.e., all structures of steel, concrete, light alloy or composite construction having an interface with the sea, including ships, fixed and mobile offshore platforms, submarine and submersibles, pipelines, subsea systems for shallow and deep ocean operations and coastal structures such as piers.
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