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Experimental flow-induced motions of a FOWT semi-submersible type (OC4 Phase Ⅱ Floater)

机译:生长半潜水型的实验流动诱导的运动(OC4阶段Ⅱ浮动)

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摘要

Flow-induced motions (FIM) are an issue for floating offshore structures, such as multi-column platforms, as the phenomenon can decrease the fatigue life of the mooring, riser, and cable systems. The new concept of floating offshore wind turbines (FOWT) have a multi-column design that may be subjected to FIM. In the past, FIM was studied mainly for Oil & Gas platforms installed in deep waters. However, the FIM phenomenon of FOWT has been insufficiently explored. To rectify this, model tests were performed for the semisubmersible (SS) floating system design developed for the DeepCwind project (Offshore Code Comparison Collaboration Continuation (OC4) phase Ⅱ). This paper will investigate the presence of FIM and show its importance in the design process of FOWT. Three different incidence angles of the current were tested, namely, 0, 90, and 180 deg. For each heading, 30 reduced velocities were tested, across the range 8000 < Re < 70,000. The results showed amplitudes in the transverse direction of around 70% of the diameter of the platform column, which is similar to those observed for deep-draft (DD) SS with circular columns. Note that these amplitude values are larger for a floater with a circular column, than for a platform with square columns. The results showed that as FIM occurred for this specific FOWT SS, its effect has to be considered in the mooring system and electric cable design.
机译:流动诱导的运动(FIM)是浮动近海结构的问题,例如多柱平台,因为该现象可以降低系泊,提升管和电缆系统的疲劳寿命。浮动近海风力涡轮机(家禽)的新概念具有多柱设计,可能会受到FIM。在过去,FIM主要研究了在深水中安装的油气平台。然而,FIM的FIM现象已经不够探索。为了纠正这一点,对为DeepCwind项目开发的半机械(SS)浮动系统设计进行了模型测试(海上代码比较协作延续(OC4)阶段Ⅱ)。本文将调查FIM的存在,并表达了其在家禽设计过程中的重要性。测试电流的三个不同的发射角,即0,90和180℃。对于每个标题,测试了30个减小的速度,横跨8000

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  • 来源
    《Oceanographic Literature Review》 |2021年第7期|1620-1620|共1页
  • 作者单位

    OSPL-Ocean Space Planning Laboratory Department of Systems Innovation School of Engineering University of Tokyo Bunkyo-ku Tokyo 113- 8656 Japan;

    OSPL-Ocean Space Planning Laboratory Department of Systems Innovation School of Engineering University of Tokyo Bunkyo-ku Tokyo 113- 8656 Japan;

    OSPL-Ocean Space Planning Laboratory Department of Systems Innovation School of Engineering University of Tokyo Bunkyo-ku Tokyo 113- 8656 Japan;

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