探索无粘性土中吸斗地基循环性能的离心机试验

IF 1.2 4区 工程技术 Q4 ENGINEERING, GEOLOGICAL
Senthen Amuthan Mani, Francisco da Silva Pereira, Phil Watson, Britta Bienen, M. Fraser Bransby, Han Eng Low, Carl Erbrich, Sam Ingarfield, Avi Shonberg, Michael Harte
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引用次数: 0

摘要

单桩支撑海上风力涡轮机的另一种方法是使用建立在吸水桶上的护套结构。这些地基已在最近的开发中成功应用,并证明是一种可行的地基概念,因为其安装相对快速、噪音低,而且普遍适用于各种土壤条件,并适合在较深的水域中使用。然而,在粗粒土壤中承受短期和长期隆起荷载的斗式地基的行为仍是一个持续研究的领域。在本项目的离心机测试中,离岸土壤来自亚洲的一个地点,淤泥大小的颗粒、水孔隙流体和较快的加载速率相结合,用于复制在砂中加载全尺寸斗式地基时的排水条件。在吸水安装之后,对裙板进行了初始自重渗透,然后进行了就地测试,以探索单调和循环性能。本文介绍了试验测试的结果,包括地基对围绕平均上浮荷载对称施加的循环(暴风雨)荷载的响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Centrifuge tests exploring the cyclic performance of suction bucket foundations in cohesionless soils
An alternate to monopiles to support offshore wind turbines is the use of jacket structures founded on suction buckets. These foundations have been successfully deployed in recent developments and have proven to be a viable foundation concept due to their relatively fast and low-noise installation, as well as their general applicability for a wide range of soil-conditions and suitability in deeper waters. However, the behaviour of bucket foundations subject to both short- and long-term uplift loading in coarse grained soil remains an area of ongoing research. For the centrifuge testing in this project, offshore soil was provided from an Asian site – and the combination of silt size particles, water pore fluid and faster loading rates was used to replicate the drainage conditions during the loading of a full-scale bucket foundation in sand. Initial self-weight penetration of the skirts was followed by suction installation, with in-place testing then undertaken to explore both monotonic and cyclic performance. This paper presents results from the pilot testing, including the foundation response to cyclic (storm) loading applied symmetrically around an average uplift load.
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来源期刊
CiteScore
3.60
自引率
15.80%
发文量
26
期刊介绍: International Journal of Physical Modelling in Geotechnics contains the latest research and analysis in all areas of physical modelling at any scale, including modelling at single gravity and at multiple gravities on a centrifuge, shaking table and pressure chamber testing and geoenvironmental experiments.
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