基于风轮机尾缘襟翼的高效气动伺服弹性建模与控制

B. Ng, H. Hesse, R. Palacios, E. Kerrigan, J. Graham
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引用次数: 10

摘要

本文提出了一种计算效率高的具有后缘气动控制面的大型风力机动载荷缓解气动伺服弹性建模方法。气动弹性模型直接用状态空间公式表示,尾缘襟翼直接用非定常气动模型表示。利用单叶片旋转的线性模型,设计了一种使叶片根部弯矩最小化的线性二次高斯调节器,结果表明,在全风力机非线性气动弹性模型的闭环下,该调节器可使负荷减少约20%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient aeroservoelastic modeling and control using trailing-edge flaps of wind turbines
This paper presents a computationally efficient aeroservoelastic modeling approach for dynamic load alleviation in large wind turbines with trailing-edge aerodynamic control surfaces. The aeroelastic model is expressed directly in a state-space formulation and trailing-edge flaps are modeled directly in the unsteady aerodynamics. The linear model of a single rotating blade is used to design a Linear-Quadratic-Gaussian regulator for minimizing the root-bending moments, which is shown to provide load reductions of about 20% in closed-loop on the full wind turbine non-linear aeroelastic model.
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