Concept Design and Analysis of Wind-Tracing Floating Offshore Wind Turbines

Shuijin Li, A. Lamei, M. Hayatdavoodi, C. Wong
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引用次数: 6

Abstract

Most of the existing floating offshore wind turbines (FOWT), whether in concept or built, host a single turbine. Structures that can host multiple turbines have received attention in recent years, mainly with the aim of reducing the overall cost of energy production and maintenance. A concept challenge of placing multiple wind turbines on a single floating platform is that under variable wind directions, the leading turbines may block the wind against the trailing turbines. In this work, concept design of a wind-tracing floating structure accommodating three wind turbines is presented. The triangular-shapefloating platform is made of pre-stressed concrete, and the turbines are located on the corners. The floating structure uses a single-point mooring system which allows for the entire structure to rotate in response to the change of wind direction. Due to the particular configuration of the floating structure, it is essential to consider the wind, wave and current loads, along with the response of the structure, simultaneously. Response of the FOWT to simultaneous environmental loads from different directions is studied by use of the constant panel approach of the Green function method, subject to constant wind loads on the turbines and linear mooring loads. We also consider the elasticity of the structure by use of finite element analysis, coupled with the hydro- and aero-dynamic loads and responses.
寻风浮式海上风力发电机的概念设计与分析
大多数现有的浮动海上风力涡轮机(FOWT),无论是在概念上还是在建造中,都有一个涡轮机。近年来,能够容纳多个涡轮机的结构受到了关注,主要是为了降低能源生产和维护的总体成本。将多个风力涡轮机放置在一个浮动平台上的一个概念挑战是,在可变风向下,前面的涡轮机可能会阻挡风对后面涡轮机的影响。在这项工作中,提出了一个可容纳三台风力涡轮机的寻风浮式结构的概念设计。三角形的浮动平台由预应力混凝土制成,涡轮机位于角落。浮动结构采用单点系泊系统,允许整个结构随着风向的变化而旋转。由于浮式结构的特殊配置,必须同时考虑风、浪和流荷载以及结构的响应。采用格林函数法的常面板方法,研究了风轮在恒定风荷载和线性系泊荷载作用下,风轮对不同方向同时环境荷载的响应。我们还考虑了结构的弹性使用有限元分析,结合水动力和气动载荷和响应。
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