Cable JIP: A Research Project to Assess the Feasibility of a Semi-Static Electrical Subsea Cable for the Power Take-off from a TLP-type Floating Offshore Wind Turbine

J. D. Wilde, C. V. D. Nat, L.. Pots, L. Vries, Q. Liu
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Abstract

CABLE JIP research project in 2017-2019 was initiated with the aim of studying the feasibility of deploying a novel semi-static electrical cable for the power take-off from a TLP-type Floating Offshore Wind Turbine (FOWT). Today, expensive dynamic electrical cables are mainly used for the power take-off from demonstrator project FOWTs or from new FOWTs on the drawing board. For a TLP-type FOWT, the use of a semi-static electrical power cable instead of a fully dynamic electrical power cable (umbilical) is an attractive option to reduce the levelized cost of energy (LCoE). However, the electrical power cable in a dynamic offshore environment is vulnerable to failure, either at the floater side or at the seabed touchdown area. Moreover, the electrical power cable for power take-off is typically non-redundant, while the availability of the turbine(s) highly depends on this critical component to transport the produced power to the substation. The paper discusses the results of the CABLE JIP research project, with focus on the verification and calibration of the numerical models for the ULS and FLS assessment of the electrical power inter-array cable for a harsh weather test case with a TLP-type floating offshore wind turbine in 96.5 m water depth.
电缆JIP:一项研究项目,旨在评估用于张力腿式浮动海上风力涡轮机电力输出的半静态海底电缆的可行性
2017-2019年启动了CABLE JIP研究项目,目的是研究部署一种新型半静态电缆用于tlp型浮动海上风力涡轮机(FOWT)的电力输出的可行性。今天,昂贵的动态电缆主要用于演示项目的动力输出,或用于图纸上的新动力输出。对于tlp型FOWT,使用半静态电力电缆代替全动态电力电缆(脐带缆)是降低平准化能源成本(LCoE)的一个有吸引力的选择。然而,在海上动态环境中,无论是在浮子侧还是在海底触地区域,电力电缆都容易发生故障。此外,用于电力输出的电力电缆通常是非冗余的,而涡轮机的可用性高度依赖于将产生的电力传输到变电站的关键部件。本文讨论了CABLE JIP研究项目的成果,重点讨论了在96.5 m水深的tlp型海上风力发电机的恶劣天气试验用例中电力阵列间电缆的ULS和FLS评估的数值模型的验证和校准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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