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Augmentation of fighter-aircraft performance by spanwise blowing over the wing leading edgeSpanwise blowing over the wing and canard of a 1:35 model of a close-coupled-canard fighter-airplane configuration (similar to the Kfir-C2) was investigated experimentally in low-speed flow. Tests were conducted at airspeeds of 30 m/sec (Reynolds number of 1.8 x 10 to the 5th power based on mean aerodynamic chord) with angle-of-attack sweeps from -8 deg to 60 deg, and yaw-angle sweeps from -8 deg to 36 deg at fixed angles of attack 0 deg, 10 deg, 20 deg, 25 deg, 30 deg, and 35 deg. Significant improvement in lift-curve slope, maximum lift, drag polar and lateral/directional stability was found, enlarging the flight envelope beyond its previous low-speed/maximum-lift limit. In spite of the highly swept (60 deg) leading edge, the efficiency of the lift augmentation by blowing was relatively high and was found to increase with increasing blowing momentum on the close-coupled-canard configuration. Interesting possibilities of obtaining much higher efficiencies with swirling jets were indicated.
Document ID
19840004065
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Seginer, A.
(Technion-Israel Inst. of Technology)
Salomon, M.
(SAL Engineering)
Date Acquired
August 12, 2013
Publication Date
July 1, 1983
Publication Information
Publication: AGARD Aerodyn. of Vortical Type Flows in Three Dimensions
Subject Category
Aerodynamics
Accession Number
84N12133
Distribution Limits
Public
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