Effect of Trough Incidence Angle on the Aerodynamic Characteristics of a Biomimetic Leading-Edge Protuberanced (LEP) Wing at Various Turbulence Intensities

被引:0
|
作者
Arunvinthan, Shanmugam [1 ]
Gouri, Ponnusamy [1 ]
Divysha, Saravanan [1 ]
Devadharshini, Rk [1 ]
Nithya Sree, Rajan [1 ]
机构
[1] SASTRA Univ, Sch Mech Engn, Thanajvur 613401, Tamil Nadu, India
关键词
leading-edge protuberances; trough incidence angle; aerodynamic force coefficients; surface-pressure characteristics; pressure measurement; wind tunnel testing; pressure-integration technique; biomimetics and turbulence intensities; HUMPBACK WHALE; HYDRODYNAMIC CHARACTERISTICS; TUBERCLES; FLOW; TURBINE; DESIGN;
D O I
10.3390/biomimetics9060354
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A series of wind tunnel tests were performed to investigate the effect of turbulent inflows on the aerodynamic characteristics of variously modified trough incident leading-edge-protuberanced (LEP) wing configurations at various turbulence intensities. A self-developed passive grid made of parallel arrays of round bars was placed at different locations of the wind tunnel to generate desired turbulence intensity. The aerodynamic forces acting over the trough incidence LEP wing configuration where obtained from surface pressure measurements made over the wing at different turbulence intensities using an MPS4264 Scanivalve simultaneous pressure scanner corresponding to a sampling frequency of 700 Hz. All the test models were tested at a wide range of angles of attack ranging between 0 degrees <=alpha <= 90 degrees at turbulence intensities varying between 5.90% <= TI <= 10.54%. Results revealed that the time-averaged mean coefficient of lift (CL) increased with the increase in the turbulence intensity associated with smooth stall characteristics rendering the modified LEP test models advantageous. Furthermore, based on the surface pressure coefficients, the underlying dynamics behind the stall delay tendency were discussed. Additionally, attempts were made to statistically quantify the aerodynamic forces using standard deviation at both the pre-stall and the post-stall angles.
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页数:21
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