CFD Simulation of Semi-Submersible Floating Offshore Wind Turbine Under Pitch Decay Motion

Yu Wang, Hamn-Ching Chen, G. Vaz, S. Burmester
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引用次数: 9

Abstract

The application of a computational fluid dynamics (CFD) code to simulate the response of a semi-submersible floating wind turbine under pitch decay motion was investigated in this study. Estimation of the natural period, the hydrodynamic damping and the flow characteristics were the main focus of this study. An extensive verification study of the simulation results was conducted to improve the confidence and reliability of the numerical simulation by the estimation of the numerical errors and uncertainties. The time series of pitch motion was plotted against model test data. In addition, the pitch period and hydrodynamic damping were calculated and compared to experimental data. Detailed flow characteristics as vorticity field and hydrodynamic pressure field on the floater surface were illustrated after post processing of the computational data. The results of the flow characteristics suggest that the heave damping plates were a major contributor to the hydrodynamic damping of this floater in pitch decay.
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桨距衰减运动下半潜式浮式海上风力机CFD模拟
应用计算流体力学(CFD)程序模拟了半潜式浮动风力机在桨距衰减运动下的响应。自然周期、水动力阻尼和流动特性的估计是本研究的重点。通过对数值误差和不确定性的估计,对模拟结果进行了广泛的验证研究,以提高数值模拟的置信度和可靠性。根据模型试验数据绘制了俯仰运动时间序列。此外,还计算了俯仰周期和水动力阻尼,并与实验数据进行了比较。通过对计算数据的后处理,给出了浮体表面涡度场和动水压力场的详细流动特征。流动特性分析结果表明,在俯仰衰减过程中,升沉阻尼板是浮子水动力阻尼的主要贡献者。
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