The Science of Making Torque from Wind 2012 | |
LDV measurement of boundary layer on rotating blade surface in wind tunnel | |
Maeda, Takao^1 ; Kamada, Yasunari^1 ; Murata, Junsuke^1 ; Suzuki, Daiki^1 ; Kaga, Norimitsu^1 ; Kagisaki, Yosuke^1 | |
Division of Mechanical Engineering, Mie University, 1577 Kurimamachiya-cho, Tsu, Mie | |
514-0857, Japan^1 | |
关键词: Centrifugal Forces; Flow behaviours; Generate electricity; Laser Doppler velocimeter (LDV); LDV measurements; Rotor aerodynamics; Rotor performance; Three-dimensional flow patterns; | |
Others : https://iopscience.iop.org/article/10.1088/1742-6596/555/1/012057/pdf DOI : 10.1088/1742-6596/555/1/012057 |
|
来源: IOP | |
【 摘 要 】
Wind turbines generate electricity due to extracting energy from the wind. The rotor aerodynamics strongly depends on the flow around blade. The surface flow on the rotating blade affects the sectional performance. The wind turbine surface flow has span-wise component due to span-wise change of airfoil section, chord length, twisted angle of blade and centrifugal force on the flow. These span-wise flow changes the boundary layer on the rotating blade and the sectional performance. Hence, the thorough understanding of blade surface flow is important to improve the rotor performance. For the purpose of clarification of the flow behaviour around the rotor blade, the velocity in the boundary layer on rotating blade surface of an experimental HAWT was measured in a wind tunnel. The velocity measurement on the blade surface was carried out by a laser Doppler velocimeter (LDV). As the results of the measurement, characteristics of surface flow are clarified. In optimum tip speed operation, the surface flow on leading edge and r/R=0.3 have large span-wise velocity which reaches 20% of sectional inflow velocity. The surface flow inboard have three dimensional flow patterns. On the other hand, the flow outboard is almost two dimensional in cross sectional plane.
【 预 览 】
Files | Size | Format | View |
---|---|---|---|
LDV measurement of boundary layer on rotating blade surface in wind tunnel | 1807KB | download |