2015
DOI: 10.4028/www.scientific.net/amm.758.63
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Experimental Study on the Effect of Vortex Generator on the Aerodynamic Characteristics of NASA LS-0417 Airfoil

Abstract: Boundary layer flow structure developing on an airfoil surfaces strongly affects drag and lift forces acting on the body. Many studies have been done to reduce drag, such as introducing surface roughness on the airfoil surface, gas injection, attachment of vortex generators, or moving surface on the airfoil. Previous results showed that the attachment of vortex generators has potentially been able to control boundary layer separation compared to other controlling devices. This study is focused on the evaluatio… Show more

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Cited by 3 publications
(2 citation statements)
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“…The performance of VGs has also been found dependent on the flow Reynolds number; experiments on the aerodynamic performance of a VG equipped NASA LS-0417 airfoil have shown improvements only for high Reynolds numbers (Sutardi and Agung, 2015). Additionally, this study has reported that the VGs have accelerated stall, which is undesirable.…”
Section: Introductionmentioning
confidence: 85%
“…The performance of VGs has also been found dependent on the flow Reynolds number; experiments on the aerodynamic performance of a VG equipped NASA LS-0417 airfoil have shown improvements only for high Reynolds numbers (Sutardi and Agung, 2015). Additionally, this study has reported that the VGs have accelerated stall, which is undesirable.…”
Section: Introductionmentioning
confidence: 85%
“…But at a larger Reynolds number, C L /C D increased by approximately 36%. [37] Simpler (2D) geometry Between 1 m/s and 10 m/s Wind tunnel research Two different VG applications were investigated. The results show that VGs with counter-rotating types ensured better results compared to VGs with co-rotating configurations.…”
Section: Wind Tunnel Researchmentioning
confidence: 99%