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首页> 外文期刊>Energies >Effect of Smart Rotor Control Using a Deformable Trailing Edge Flap on Load Reduction under Normal and Extreme Turbulence
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Effect of Smart Rotor Control Using a Deformable Trailing Edge Flap on Load Reduction under Normal and Extreme Turbulence

机译:在正常和极端湍流下使用可变形后缘襟翼的智能转子控制对降低负荷的影响

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摘要

This paper presents a newly developed aero-servo-elastic platform for implementing smart rotor control and shows its effectiveness with aerodynamic loads on large-scale offshore wind turbines. The platform was built by improving the FAST/Aerodyn codes with the integration of an external deformable trailing edge flap controller in the Matlab/Simulink software. Smart rotor control was applied to an Upwind/NREL 5 MW reference wind turbine under various operating wind conditions in accordance with the IEC Normal Turbulence Model (NTM) and Extreme Turbulence Model (ETM). Results showed that, irrespective of whether the NTM or ETM case was considered, aerodynamic load in terms of blade flapwise root moment and tip deflection were effectively reduced. Furthermore, the smart rotor control also positively affected generator power, pitch system and tower load. These results laying a foundation for a future migration of the “smart rotor control” concept into the design of large-scale offshore wind turbines.
机译:本文介绍了一种新开发的用于实现智能转子控制的气动-气动弹性平台,并展示了其在大型海上风力涡轮机上承受气动载荷的有效性。该平台是通过在Matlab / Simulink软件中集成外部可变形后缘襟翼控制器来改进FAST / Aerodyn代码而构建的。根据IEC标准湍流模型(NTM)和极端湍流模型(ETM),在各种运行风力条件下,将智能转子控制应用于Upwind / NREL 5 MW参考风力涡轮机。结果表明,无论是否考虑NTM或ETM情况,都有效地减小了叶片襟翼根部力矩和叶尖挠度方面的空气动力学负荷。此外,智能转子控制还对发电机功率,变桨系统和塔架负载产生了积极影响。这些结果为将来“智能转子控制”概念向大型海上风力涡轮机的设计奠定了基础。

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