Effects of Canard Planform and Wing-leading-edge Modification on Low-speed Longitudinal Aerodynamic Characteristics of a Canard Airplane Configuration

Effects of Canard Planform and Wing-leading-edge Modification on Low-speed Longitudinal Aerodynamic Characteristics of a Canard Airplane Configuration
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Total Pages : 54
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ISBN-10 : UIUC:30112106590471
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Rating : 4/5 (71 Downloads)

Synopsis Effects of Canard Planform and Wing-leading-edge Modification on Low-speed Longitudinal Aerodynamic Characteristics of a Canard Airplane Configuration by : Bernard Spencer

An investigation has been conducted at low subsonic speeds to study the effects of canard planform and wing-leading-edge modification on the longitudinal aerodynamic characteristics of a general research canard airplane configuration. The basic wing of the model had a trapezoidal planform, an aspect ratio of 3.0, a taper ratio of 0.143, and an unswept 80-percent-chord line. Modifications to the wing included addition of full-span and partial-span leading-edge chord-extensions. Two canard planforms were employed in the study one was a 60° sweptback delta planform and the other was a trapezoidal planform similar to that of the basic wing. Modifications to these canards included addition of a full-span leading-edge chord-extension to the trapezoidal planform and a fence to the delta planform. For the basic-wing-trapezoidal-canard configuration, rather abrupt increases in stability occurred at about 12° angle of attack. A slight pitch-up tendency occurred for the delta-canard configuration at approximately 8° angle of attack. A comparison of the longitudinal control effectiveness for the basic-wing-trapezoidal-canard combination and for the basic-wing-delta-canard combination indicates higher values of control effectiveness at low angles of attack for the trapezoidal canard. The control effectiveness for the delta-canard configuration, however, is seen to hold up for higher canard deflections and to higher angles of attack. Use of a full-span chord-extension deflected approximately 30° on the trapezoidal canard greatly improved the control characteristics of this configuration and enabled a sizeable increase in trim lift to be realized.

NASA Technical Note

NASA Technical Note
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Total Pages : 750
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ISBN-10 : MINN:31951000845778F
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Index of NASA Technical Publications

Index of NASA Technical Publications
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Total Pages : 448
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ISBN-10 : UIUC:30112032439504
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Synopsis Index of NASA Technical Publications by : United States. National Aeronautics and Space Administration

Technical Abstract Bulletin

Technical Abstract Bulletin
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Total Pages : 1540
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ISBN-10 : UTEXAS:059172131213043
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Synopsis Technical Abstract Bulletin by : Defense Documentation Center (U.S.)

Index to NASA Technical Publications

Index to NASA Technical Publications
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ISBN-10 : STANFORD:36105024165701
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Synopsis Index to NASA Technical Publications by : United States. National Aeronautics and Space Administration