[1] | 蔡新, 朱杰, 潘盼. 水平轴风力机叶片最优体型设计
|
[2] | [J]. 工程力学, 2013, 30(2): 477―480. Cai Xin, Zhu Jie, Pan Pan. The best shape design of horizontal axis wind turbine blade
|
[3] | [J]. Engineering Mechanics, 2013, 30(2): 477―480. (in Chinese)
|
[4] | Rijs R P P, Jacobs P, Smulders P T. Parameter study of the performance of slow running rotors
|
[5] | [J]. Wind Energy and Industrial Aerodyn, 1992, 39(3): 95―103.
|
[6] | Ghadirian A, Dehghan M, Torabi F. Considering induction factor using BEM method in wind farm layout optimization
|
[7] | [J]. Journal of Wind Engineering and Industrial Aerodynamics, 2014, 129: 31―39.
|
[8] | Wang T G. Unsteady aerodynamic modeling of horizontal axis wind turbine performance
|
[9] | [D]. Glasgow: University of Glasgow, 1999.
|
[10] | 伍艳, 谢华, 王同光. 风力机叶片的非定常气动特性计算方法的改进
|
[11] | [J]. 工程力学, 2008, 25(10): 54―59.Wu Yan, Xie Hua, Wang Tongguang. Modification of calculating unsteady aerodynamic characteristics of wind turbine blades
|
[12] | [J]. Engineering Mechanics, 2008, 25(10): 54―59. (in Chinese)
|
[13] | Chaviaropoulos P K, Hansen M O L. Investigating three-dimensional and rotational effects on wind turbine blades by means of a quasi-3D Navier-Stokes solver
|
[14] | [J]. Journal of Fluids Engineering, 2000, 122(2): 518―548.
|
[15] | Sandersen B, Pijl S P, Koren B. Review of computational fluid dynamics for wind turbine wake aerodynamics
|
[16] | [J]. Wind Energy, 2011, 14(7): 799―819.
|
[17] | Vermeer L J, Sorensen J N, Crespo A. Wind turbine aerodynamics
|
[18] | [J]. Progress in Aerospace Sciences, 2003, 39(6): 467―510.
|
[19] | Breton S P, Coton F N, Moe G. A study on rotational effects and different stall delay models using a prescribed wake vortex scheme and NREL Phase VI experiment data
|
[20] | [J]. Wind Energy, 2008, 11(5): 459―482.
|
[21] | Wang T, Coton FN. An unsteady aerodynamic model for HAWT performance including tower shadow effects
|
[22] | [J]. Wind Engineering, 1999, 23(5): 255―268.
|
[23] | Sebastian T, Lackner M A. Development of a free vortex wake method code for offshore floating wind turbines
|
[24] | [J]. Renewable Energy, 2012, 46: 269―275.
|
[25] | Zhou W P, Tang S L, Lü H, Computation on aerodynamic performance of horizontal axis wind turbine based on time-marching free vortex method
|
[26] | [J]. Chinese Society for Electrical Engineering, 2011, 31(29): 124―130.
|
[27] | Jeon M, Lee S. Unsteady aerodynamics of offshore floating wind turbines in platform pitching motion using vortex lattice method
|
[28] | [J]. Renewable Energy, 2014, 65: 207―212.
|
[29] | Schepers J G, Heidra J, Thomsen K, et al. Verification of European wind turbine design codes
|
[30] | [C]// Proceedings of the European Wind Energy Conference. Copenhagen, 2001: 581―586.
|
[31] | Martin O L Hansen. Aerodynamics of wind turbines
|
[32] | [M]. 2nd ed. London: Earthscan, 2008: 108―120.
|
[33] | 金鑫, 王磊, 刘桦. 大功率风力发电机地震动力学建模及载荷计算
|
[34] | [J]. 工程力学, 2012, 29(5): 224―229.Jin Xin, Wang Lei, Liu Hua. A large scale wind turbine dynamic model and its load calculation in earthquake
|
[35] | [J]. Engineering Mechanics, 2012, 29(5): 224―229. (in Chinese)
|
[36] | Michael Accorsi, John Leonard. Structural modeling of parachute dynamics
|
[37] | [J]. AIAA Journal, 2000, 38(1): 139―146.
|
[38] | Hand M M, Simms D A. Unsteady aerodynamic experiment phase VI: Wind tunnel test configurations and available data campaigns
|
[39] | [R]. National Renewable Energy Laboratory, Colorado: National Technical Information Service, 2001.
|
[40] | Hand M M , Simms D A. NREL unsteady aerodynamics experiment in the NASA-Ames wind tunnel: A comparison of predictions to measurements
|
[41] | [R]. National Renewable Energy Laboratory, Colorado: National Technical Information Service, 2001.
|
[42] | 肖京平, 陈立, 许波峰, 武杰. 1.5MW风力机气动性能研究
|
[43] | [J]. 空气动力学学报, 2011, 29(4): 529―534.Xiao Jingping, Chen Li, Xu Bofeng, Wu Jie. Investigation on aerodynamic performance of a 1.5MW wind turbine
|
[44] | [J]. Acta Aerodynamic Sinica, 2011, 29(4): 529―534. (in Chinese)
|