本文以UpWind/NREL 5 MW为参考风力机,通过重新集成和改进FAST/Aerodyn气动、结构模块,结合Matlab/Simulink里搭建的PID控制器,自主开发了基于柔性尾缘襟翼(DTEF)的“智能叶片”整机气动伺服弹性仿真平台.在此基础上,研究了基于DTEF智能叶片系统降低IEC多种湍流风下疲劳载荷的有效性及其疲劳载荷减少情况.结果表明;无论是标准湍流风模型(NTM)还是极限湍流模型(ETM)下,所开发的智能叶片系统都有效地降低了疲劳载荷,其中,叶根挥舞弯矩和叶尖偏移量的波动都得到了有效的减少.
参考文献
[1] | Paul S. Veers;Thomas D. Ashwill;Herbert J. Sutherland;Daniel L. Laird;Donald W. Lobitz;Dayton A. Griffin;John F. Mandell;Walter D. Musial;Kevin Jackson;Michael Zuteck;Antonio Miravete;Stephen W. Tsai;James L. Richmond .Trends in the Design, Manufacture and Evaluation of Wind Turbine Blades[J].Wind energy,2003(3):245-259. |
[2] | Review of state of the art in smart rotor control research for wind turbines[J].Progress in aerospace sciences,2010(1):1. |
[3] | Niels Troldborg .Computational study of the Ris?-B1-18 airfoil with a hinged flap providing variable trailing edge geometry[J].Wind Engineering,2005(2):89-113. |
[4] | A comparison of smart rotor control approaches using trailing edge flaps and individual pitch control[J].Wind energy,2010(2/3):117. |
[5] | E. A. Bossanyi .Individual Blade Pitch Control for Load Reduction[J].Wind energy,2003(2):119-128. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%