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Wind field simulation of large horizontal-axis wind turbine system under different operating conditions

机译:大型水平轴风力发电机系统不同工况下的风场模拟

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This paper proposes a technique of generating turbulent wind velocities on large horizontal-axis wind turbine systems under different operating conditions. The rotational sampling effect, vertical wind shear and coherence between wind velocities at blades and on the tower were taken into account. Coordinate system of wind time series at certain discrete sampling points on the vertical plane of the wind turbine is generated by the hybrid weighted amplitude wave superposition and proper orthogonal decomposition (POD) methods. The POD eigenmodes on the blades after updating locations were calculated subsequently using B-spline surface interpolation method, and the rotationally sampled wind velocities are reconstructed by taking advantage of POD method again. Examples are subsequently presented to validate this proposed technique and demonstrate the generation of wind velocities under different operating conditions. The results show that the simulated spectrum of turbulent wind velocities at blades corresponds well to the measured data and that on the tower agrees well with the fixed point Kaimal spectrum. The reasonable sampling points spacing is suggested to be about 10m for the wind field simulation of wind turbine system. The proposed method is of great advantage in accuracy and efficiency, which is greatly significant for the fine analysis of multi-megawatt wind turbines. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:本文提出了一种在不同工况下在大型水平轴风力发电机系统上产生湍流风速的技术。考虑了旋转采样效果,垂直风切变以及叶片和塔架上风速之间的连贯性。通过混合加权振幅波叠加和适当的正交分解(POD)方法,在风力涡轮机的垂直平面上的某些离散采样点处建立了风时间序列的坐标系。随后使用B样条表面插值法计算更新位置后叶片上的POD本征模,并再次利用POD方法重建旋转采样的风速。随后提供示例以验证该提议的技术并演示在不同运行条件下风速的产生。结果表明,叶片处湍流风速的模拟频谱与实测数据吻合良好,塔架上的数值与定点Kaimal频谱吻合良好。对于风机系统的风场模拟,合理的采样点间距建议为10m左右。所提出的方法在精度和效率上都具有很大的优势,这对于兆瓦级风力发电机的精细分析具有重要意义。版权所有(c)2015 John Wiley&Sons,Ltd.

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