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Investigation of the characteristics of a high-aspect-ratio wing in the Langley 8-foot high-speed tunnel

contributor authorNASA - National Aeronautics and Space Administration (NASA)
date accessioned2017-09-04T17:27:14Z
date available2017-09-04T17:27:14Z
date copyright01/01/1940
date issued1940
identifier otherCMMCWDAAAAAAAAAA.pdf
identifier urihttp://yse.yabesh.ir/std/handle/yse/150387
description abstractAn investigation of the characteristics of a wing with an aspect ratio of 9.0 and an NACA 65-210 airfoil section has been made at Mach number up to 0.925. The wing tested has a taper ratio of 2.5:1.0, no twist, dihedral, or sweepback, and 20-percent - chord 37.5-percent-semispan plain ailerons. The results showed that serious changes in the normal-force characteristics occurred when the Mach number was increased above 0.74 at angles of attack between 4 deg. and 10 deg. and above 0.80 at 0 deg. angle of attack.Because of small outboard shifts in the lateral center of load, the bending moment at the root for conditions corresponding to a 3g pull-out at an altitude of 35,000 feet increased by approximately 5% when the Much number was increased beyond 0.83 the negative pitching moments for the high angles of attack increased, whereas those for the low angles of attack decreased with a resulting large increase in the negative slope of the pitching-moment curves. A large increase occurred in the values of the drag coefficients for the range of lift coefficients needed for level flight at an altitude of 35,000 feet when the Mach number was increased beyond a value of 0.80. The wakes at a station 2.82 root chords behind the wing quarter-chord line extended approximately a chord above the wing chord line for the angles of attack required to recover from high-speed dives at high Mach numbers.
languageEnglish
titleNACA-RM-L6H28 REV Anum
titleInvestigation of the characteristics of a high-aspect-ratio wing in the Langley 8-foot high-speed tunnelen
typestandard
page78
statusActive
treeNASA - National Aeronautics and Space Administration (NASA):;1940
contenttypefulltext


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