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Dynamic longitudinal stability characteristics of a swept-wing fighter-type airplane at Mach numbers between 0.36 and 1.45

contributor authorNASA - National Aeronautics and Space Administration (NASA)
date accessioned2017-09-04T17:18:43Z
date available2017-09-04T17:18:43Z
date copyright01/01/1957
date issued1957
identifier otherZLMCWDAAAAAAAAAA.pdf
identifier urihttp://yse.yabesh.ir/std/handle/yse/141999
description abstractINTRODUCTION
The static and dynamic longitudinal stability characteristics and derivatives, as determined from flight pulse data, for two wing configurations of a 45° swept-wing fighter-type airplane capable of flight well into the supersonic region are presented in this paper. Stabilizer pulse data employed were obtained for an original-wing configuration and also for a configuration with a 1-foot extension of the wing tip. All data were obtained within the 10,000- and 40,000-foot levels over the Mach number range from 0.36 t o 1.45 at the NACA High-Speed Flight Station at Edwards, Calif.
The results of the flight data analysis are compared with available wind-tunnel data which have been corrected for the momentum effects of the intake air of the jet engine.
This paper constitutes one part of a general flight investigation of the stability, performance, and aerodynamic load characteristics of the airplane. Results of of other investigations have been reported in references 1 to 4.
languageEnglish
titleNACA-RM-H56H03num
titleDynamic longitudinal stability characteristics of a swept-wing fighter-type airplane at Mach numbers between 0.36 and 1.45en
typestandard
page29
statusActive
treeNASA - National Aeronautics and Space Administration (NASA):;1957
contenttypefulltext


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