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NASA-TM-85674

Aileron effectiveness for a subsonic transport model with a high-aspect-ratio supercritical wing

Organization:
NASA - National Aeronautics and Space Administration (NASA)
Year: 1983

Abstract: Aileron effectiveness for a subsonc energy efficient transport (EET) model with a high aspect ratio supercritical wing was determined in the 8-foot transonic pressure tunnel. Data are presented for ailerons located at three positions along the wing span. The ailerons were designed as a preliminary active control concept with gust load alleviation, maneuver load alleviation, and flutter suppression systems. A linear variation of rolling moment coefficient with angle of attack for individual and multiple aileron deflections at Mach numbers up to 0.81 is indicated. For Mach numbers greater than 0.81, the rolling moment coefficient data become nonlinear with increasing angle of attack. At Mach numbers near the design value increased aileron effectiveness resulted from aft transition locations, which produced relatively thin boundary layers and greater effective aileron deflections. Individual aileron deflections on the right wing panel produced only small effects on yawing moment and side force coefficients.
URI: http://yse.yabesh.ir/std/handle/yse/146811
Subject: AERODYNAMIC
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  • NASA - National Aeronautics and Space Administration (NASA)
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    NASA-TM-85674

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contributor authorNASA - National Aeronautics and Space Administration (NASA)
date accessioned2017-09-04T17:23:31Z
date available2017-09-04T17:23:31Z
date copyright01/01/1983
date issued1983
identifier otherZZMKAEAAAAAAAAAA.pdf
identifier urihttp://yse.yabesh.ir/std/handle/yse/146811
description abstractAileron effectiveness for a subsonc energy efficient transport (EET) model with a high aspect ratio supercritical wing was determined in the 8-foot transonic pressure tunnel. Data are presented for ailerons located at three positions along the wing span. The ailerons were designed as a preliminary active control concept with gust load alleviation, maneuver load alleviation, and flutter suppression systems. A linear variation of rolling moment coefficient with angle of attack for individual and multiple aileron deflections at Mach numbers up to 0.81 is indicated. For Mach numbers greater than 0.81, the rolling moment coefficient data become nonlinear with increasing angle of attack. At Mach numbers near the design value increased aileron effectiveness resulted from aft transition locations, which produced relatively thin boundary layers and greater effective aileron deflections. Individual aileron deflections on the right wing panel produced only small effects on yawing moment and side force coefficients.
languageEnglish
titleNASA-TM-85674num
titleAileron effectiveness for a subsonic transport model with a high-aspect-ratio supercritical wingen
typestandard
page284
statusActive
treeNASA - National Aeronautics and Space Administration (NASA):;1983
contenttypefulltext
subject keywordsAERODYNAMIC
subject keywordsAILERONS
subject keywordsAIRCRAFT
subject keywordsANGLE
subject keywordsASPECT
subject keywordsATTACK
subject keywordsBOUNDARY
subject keywordsCHARACTERISTICS
subject keywordsCONTROL
subject keywordsDYNAMIC
subject keywordsHIGH
subject keywordsLATERAL
subject keywordsLAYER
subject keywordsMACH
subject keywordsMOMENTS
subject keywordsNUMBER
subject keywordsPROFILES
subject keywordsRATIO
subject keywordsROLLING
subject keywordsSEPARATION
subject keywordsSLENDER
subject keywordsSPEED
subject keywordsSTABILITY
subject keywordsSUBSONIC
subject keywordsSUPERCRITICAL
subject keywordsTESTS
subject keywordsTRANSPORT
subject keywordsTUNNEL
subject keywordsWIND
subject keywordsWING
subject keywordsWINGS
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