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风力机叶尖涡尾迹结构PIV测量研究 被引量:20

PIV Measurements of Tip Vortex Wake Structure of a Wind Turbine
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摘要 空气动力研究与发展中心低速空气动力研究所依托工程型大风洞(实验段直径3.2 m),采用高分辨率CCD相机(4 008像素×2 672像素),针对旋转状态下的风力机叶片尾流开展大视场(单个观测区域达到570 mm×380 mm)PIV(particle image velocimetry)测量,以NREL UAE PhaseⅥ风力机叶片1/8缩比模型为实验对象,获取了叶尖涡产生、发展的流动数据,为研究风力机叶尖涡结构和流动机理研究提供重要的基础数据.观测结果表明,叶尖涡从后缘脱落后首先有一个短时间的向内运动,然后随着尾流的膨胀向外运动,其涡强度则先是短时间内降低,然后随着涡的卷起而增强,从而形成一个强大的叶尖涡.在实验观察范围内叶尖涡在来流方向的迁移规律近似线性. Large-view flow field measurements using PIV (particle image velocimetry) technique with high resolution CCD cameras on a rotating 1/8 scale blade model of NREL UAE Phase V[ wind turbine were conducted in the engineering-oriented 03.2 m wind tunnel at the Low Speed Aerodynamics Institute of China Aerodynamics Research and Development Center. The motivation behind the tests was to establish the database of the initiation and development of the tip vortex in order to investigate the flow structure and mechanism of the wind turbine. The results showed that the tip vortex firstly moved inward for a very short time and then moved outward with the wake expansion while its vorticity decreased with time after just trailed from the trailing edge of the blade tip and then increased continuously with rapid roll-up to form a strong tip vortex. The measurements also indicated that the downstream movement of the tip vortex was nearly linear in the very near wake under the test condition.
出处 《应用数学和力学》 CSCD 北大核心 2011年第6期683-692,共10页 Applied Mathematics and Mechanics
基金 国家重点基础研究发展计划(973计划)资助项目(2007CB714600) 空气动力学国家重点实验室资助项目(JBKY09010700)
关键词 风力机 PIV 叶尖涡 流场 wind turbine PIV tip vortex flow field
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参考文献11

  • 1Whale J, Anderson C G. An experimental investigation of wind turbine wakes using particle image velocimetry[c]//Proc 1993 European Community Wind Energy Conf, Germany: TravemuKnde, 1993:457-450.
  • 2Whale J, H.elmis C G, Papadopoulos K H, Anderson C G, Skyner D J. A study of the wake structure of a wind turbine comparing measurements from laboratory and full-scale experiments [J]. Solar Energy Engineering, 1995, 56(5):621-533.
  • 3Whale J, Anderson C G, Bareiss R, Wagner S. An experimental and numerical study of the vortex structure in the wake of a wind turbine [J].Journal of Wind Engineering and Industrial Aerodynamics, 2000, 84 ( 1 ) : 1-21.
  • 4Fujisawa N, Shibuya S. Observation of dynamic stall on Darrieus wind turbine blades[J]. Journal of Wind Engineering and Industrial Aerodynamics, 2001, 89 ( 2 ) : 201-214.
  • 5Hirahara H, Hossain M Z, Kawahashi M, Nonomura Y. Testing basic performance of a very small wind turbine designed for multi-purposes [J].Renewable Energy, 2005, 30 (8) : 1279- 1297.
  • 6Massouh F, Dobrev I. Exploration of the vortex wake behind of wind turbine rotor[J].Journal of Physics: Conference Series, 2007,75 : 012036. doi : 10. 1088/1742-6596/75/1/012036.
  • 7胡丹梅,田杰,杜朝辉.水平轴风力机尾迹流场PIV实验研究[J].太阳能学报,2007,28(2):200-206. 被引量:30
  • 8高志鹰,汪建文,东雪青,韩晓亮,白杨,由志刚.水平轴风力机叶尖涡流动的PIV测试[J].工程热物理学报,2010,31(3):414-418. 被引量:13
  • 9Hand M M, Simms D A, Fingersh L J, Jager D W, Cotrell J R, Schreck S, Larwood S M. Unsteady aerodynamics experiment phase VI : wind tunnel test configurations and available data campaigns[ R]. National Renewable Energy Laboratory, NREL/TP-500-29955, 2001.
  • 10Raffel M, Willert C, Wereley S, Kompenhans J. Particle Image Velocimetry: A Practical Guide[S]. 2nd ed. Berlin, Heidelberg, New Yowk: Springer, 2007.

二级参考文献15

  • 1Ebert P R, Wood D H. The Near Wake of a Model Horizontal-Axis Wind Turbine, Part 3: Properties of the Tip and Hub Vortices [J]. Renewable Energy, 2001, 22(1): 461-472.
  • 2Wood D H. Generic Vortex Modelling for Horizontal-Axis Wind Turbines [J]. Wind Engineering, 2002, 26(2): 71-84.
  • 3Leishman J G, Bhagwat M, Bagai A. Free-Vortex Filament Methods for the Analysis of Helicopter Rotor Wakes [J]. J. Aircraft, 2002, 39(5): 759-775.
  • 4Wagner S, Bareis R, Guidati G. Wind Turbine Noise [M]. Berlin: Springer, 1996:172-177.
  • 5Adrain R J. Twenty Years of Particle hnage Velocimetry [J]. Experiments in Fluids, 2005, 39(2): 159-169.
  • 6Whale J.A study of the near wake structure of a wind turbine comparing measurements from laboratory and full-scale experiments wake of a model horizontal-axial[J].Solar Energy,1996,56(6):621-633.
  • 7Whale J,Anderson C G.An experimental and numerical study of the vortex structure in the wake of a wind turbine[J].Jour of Wind Engineering and Industrial Aerodynamics,2000,84 (1):1-21.
  • 8Ebert P R,Wood D H.The near wake of a model horizontalaxis wind turbine-Ⅰ.Experimental arrangements and initial results[J].Renewable Energy,1997,12(3):225-243.
  • 9Gupa,Sandeep,Leishman,et al.Accuracy of the induced velocity of wind turbine wakes using vortex segmentation[A].Collection of ASME Wind Energy Symposium Technical Papers AIAA[C],Aerospace Sciences Meeting and Exhibit,2004,354-367.
  • 10Vermeer L J,Sorensen J N,Crespo A.Wind turbine wake aerodynamics[J].Progress in Aerospace Sciences,2003,39(6-7):467-510.

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