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Influence of second order wave excitation loads on coupled response of an offshore floating wind turbine

机译:二阶波激励载荷对近岸浮风式风力涡轮机耦合响应的影响

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This paper presents an integrated analysis about dynamic performance of a Floating Offshore Wind Turbine (FOWT) OC4 DeepCwind with semi-submersible platform under real sea environment. The emphasis of this paper is to investigate how the wave mean drift force and slow-drift wave excitation load (Quadratic transfer function, namely QTF) influence the platform motions, mooring line tension and tower base bending moments. Second order potential theory is being used for computing linear and nonlinear wave effects, including first order wave force, mean drift force and slow-drift excitation loads. Morison model is utilized to account the viscous effect from fluid. This approach considers floating wind turbine as an integrated coupled system. Two time-domain solvers, SIMA (SIMO/RIFLEX/AERODYN) and FAST are being chosen to analyze the global response of the integrated coupled system under small, moderate and severe sea condition. Results show that second order mean drift force and slow-drift force will drift the floater away along wave propagation direction. At the same time, slow-drift force has larger effect than mean drift force. Also tension of the mooring line at fairlead and tower base loads are increased accordingly in all sea conditions under investigation.
机译:本文介绍了浮动海上风力涡轮机(FOWT)OC4 Deepcwind在真正的海洋环境下半潜水平台的动态性能综合分析。本文的重点是研究波的平均漂移力和慢漂波励磁负载(二次传递函数,即QTF)影响平台运动,系泊线张力和塔底弯矩。二阶电位理论用于计算线性和非线性波效果,包括第一阶波力,平均漂移力和慢漂移型载荷。莫里森模型用于考虑流体的粘性效果。这种方法认为浮动风力涡轮机作为集成耦合系统。选择两个时间域溶剂,SIMA(SIMO / RIFLEX / AERODYN)和快速分析小,中等和严重的海洋状况下集成耦合系统的全局响应。结果表明,二阶平均漂移力和慢漂移力将沿波传播方向漂移浮动。同时,慢漂移力具有比平均漂移力更大的效果。在Fairlead和塔基负荷下的系泊线的张力也在调查的所有海洋条件下增加。

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