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NASA-TN-D-970

Effect of Ground Proximity on the Aerodynamic Characteristics of Aspect-Ratio-1 Airfoils With and Without End Plates

Organization:
NASA - National Aeronautics and Space Administration (NASA)
Year: 1961

Abstract: An investigation has been made to determine the effect of ground proximity on the aerodynamic characteristics of aspect-ratio-1 airfoils. The investigation was made with the model moving over the water in a towing tank in order to eliminate the effects of wind-tunnel walls and of boundary layer on ground boards at small ground clearances. The results indicated that, as the ground was approached, the airfoils experienced an increase in lift-curve slope and a reduction in induced drag; thus, lift-drag ratio was increased. As the ground was approached, the profile drag remained essentially constant for each airfoil. Near the ground, the addition of end plates to the airfoil resulted in a large increase in lift-drag ratio. The lift characteristics of the airfoils indicated stability of height at positive angles of attack and instability of height at negative angles; therefore, the operating range of angles of attack would be limited to positive values. At positive angles of attack, the static longitudinal stability was increased as the height above the ground was reduced. Comparison of the experimental data with Wieselsberger's ground-effect theory (NACA Technical Memorandum 77) indicated generally good agreement between experiment and theory for the airfoils without end plates.
URI: http://yse.yabesh.ir/std;jsery=autho162s7D8308/handle/yse/182038
Subject: AERODYNAMIC
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    NASA-TN-D-970

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contributor authorNASA - National Aeronautics and Space Administration (NASA)
date accessioned2017-09-04T17:58:52Z
date available2017-09-04T17:58:52Z
date copyright01/01/1961
date issued1961
identifier otherFSTKAEAAAAAAAAAA.pdf
identifier urihttp://yse.yabesh.ir/std;jsery=autho162s7D8308/handle/yse/182038
description abstractAn investigation has been made to determine the effect of ground proximity on the aerodynamic characteristics of aspect-ratio-1 airfoils. The investigation was made with the model moving over the water in a towing tank in order to eliminate the effects of wind-tunnel walls and of boundary layer on ground boards at small ground clearances. The results indicated that, as the ground was approached, the airfoils experienced an increase in lift-curve slope and a reduction in induced drag; thus, lift-drag ratio was increased. As the ground was approached, the profile drag remained essentially constant for each airfoil. Near the ground, the addition of end plates to the airfoil resulted in a large increase in lift-drag ratio. The lift characteristics of the airfoils indicated stability of height at positive angles of attack and instability of height at negative angles; therefore, the operating range of angles of attack would be limited to positive values. At positive angles of attack, the static longitudinal stability was increased as the height above the ground was reduced. Comparison of the experimental data with Wieselsberger's ground-effect theory (NACA Technical Memorandum 77) indicated generally good agreement between experiment and theory for the airfoils without end plates.
languageEnglish
titleNASA-TN-D-970num
titleEffect of Ground Proximity on the Aerodynamic Characteristics of Aspect-Ratio-1 Airfoils With and Without End Platesen
typestandard
page28
statusActive
treeNASA - National Aeronautics and Space Administration (NASA):;1961
contenttypefulltext
subject keywordsAERODYNAMIC
subject keywordsAERODYNAMICS
subject keywordsAIRFOILS
subject keywordsANGLE
subject keywordsASPECT
subject keywordsATTACK
subject keywordsBOUNDARY
subject keywordsCHARACTERISTICS
subject keywordsDRAG
subject keywordsEFFECT
subject keywordsEND
subject keywordsGROUND
subject keywordsINDUCED
subject keywordsLAYERS
subject keywordsLIFT
subject keywordsLONGITUDINAL
subject keywordsPLATES
subject keywordsRATIO
subject keywordsREDUCTION
subject keywordsSTABILITY
subject keywordsSTATIC
subject keywordsTESTS
subject keywordsTUNNEL
subject keywordsWALLS
subject keywordsWIND
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