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Analysis and real-time prediction of the full-scale thrust for floating wind turbine based on artificial intelligence

机译:基于人工智能的浮式风力发电机满量程推力分析与实时预测

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In this paper, numerous aero-hydro-servo-elastic coupled simulations are carried out in time-domain to observe the performance of the real-time thrust acting on the rotor of the OC3-Hywind offshore floating wind turbine. And the studying focuses on investigating the correlation between inputs (surge motion, pitch motion, wind conditions, etc.) and the targeted output (rotor thrust) in the time domain. Besides, artificial intelligence (AI) techniques are used to estimate a prediction model of real-time thrust based on the data from simulations. To predict the thrust, data for four comparative coupled environmental conditions are considered, by which the effect of turbulence and wave spectrum on the thrust force is also investigated. Moreover, a series of simulations of frequency-increasing regular wave conditions and speed-increasing wind conditions are carried out to observe their effect on the real-time rotor thrust. Additionally, the impact of the pitch and surge RAOs of the floating foundation and the wind velocity are quantitatively studied. It reveals that the high-frequency response of thrust is dominated by wave change, whereas low-frequency response is dominated by wind change. Besides, one simulation model of the thrust acting on the rotor is estimated regarding high-frequency and low-frequency response separately to account the dominating influence.
机译:在本文中,在时域内进行了许多航空-水-油气-弹性耦合模拟,以观察作用在OC3-Hywind海上浮式风力涡轮机转子上的实时推力性能。并且研究着重于研究时域中输入(喘振运动,俯仰运动,风况等)与目标输出(转子推力)之间的相关性。此外,人工智能(AI)技术用于基于来自仿真的数据来估计实时推力的预测模型。为了预测推力,考虑了四个比较耦合环境条件的数据,通过这些数据还研究了湍流和波谱对推力的影响。此外,对频率增加的规则波浪条件和速度增加的风力条件进行了一系列模拟,以观察它们对实时转子推力的影响。此外,还定量研究了浮动基础的俯仰和喘振RAO和风速的影响。结果表明,推力的高频响应主要由波的变化决定,而低频响应主要由风的变化决定。此外,针对高频和低频响应分别估算了作用在转子上的推力的一种仿真模型,以考虑主要影响。

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