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NASA-TM-81470

An improved prediction method for the noise generated in flight by circular jets

Organization:
NASA - National Aeronautics and Space Administration (NASA)
Year: 1980

Abstract: A semi-empirical model for predicting the noise generated by jets exhausting from circular nozzles is presented and compared with small-scale static and simulated-flight data. The present method is an updated version of that part of the original NASA aircraft noise prediction program relating to circular jet noise. The earlier method agreed reasonably well with experimental static and flight data for jet velocities up to approximately 520 m/sec. The poorer agreement at higher jet velocities appeared to be due primarily to the manner in which supersonic convection effects were formulated. The purely empirical supersonic convection formulation is replaced in the present method by one based on theoretical considerations. Other improvements of an empirical nature were included based on model-jet/free-jet simulated-flight tests. The effects of nozzle size, jet velocity, jet temperature, and flight are included.
URI: http://yse.yabesh.ir/std/handle/yse/140097
Subject: ANECHOIC CHAMBERS
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    NASA-TM-81470

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contributor authorNASA - National Aeronautics and Space Administration (NASA)
date accessioned2017-09-04T17:16:40Z
date available2017-09-04T17:16:40Z
date copyright01/01/1980
date issued1980
identifier otherZGLNGEAAAAAAAAAA.pdf
identifier urihttp://yse.yabesh.ir/std/handle/yse/140097
description abstractA semi-empirical model for predicting the noise generated by jets exhausting from circular nozzles is presented and compared with small-scale static and simulated-flight data. The present method is an updated version of that part of the original NASA aircraft noise prediction program relating to circular jet noise. The earlier method agreed reasonably well with experimental static and flight data for jet velocities up to approximately 520 m/sec. The poorer agreement at higher jet velocities appeared to be due primarily to the manner in which supersonic convection effects were formulated. The purely empirical supersonic convection formulation is replaced in the present method by one based on theoretical considerations. Other improvements of an empirical nature were included based on model-jet/free-jet simulated-flight tests. The effects of nozzle size, jet velocity, jet temperature, and flight are included.
languageEnglish
titleNASA-TM-81470num
titleAn improved prediction method for the noise generated in flight by circular jetsen
typestandard
page32
statusActive
treeNASA - National Aeronautics and Space Administration (NASA):;1980
contenttypefulltext
subject keywordsANECHOIC CHAMBERS
subject keywordsCONVECTION
subject keywordsFLIGHT SIMULATION
subject keywordsFREE BOUNDARIES
subject keywordsINTERACTIONS
subject keywordsJET AIRCRAFT NOISE
subject keywordsNOISE PREDICTION (AIRCRAFT)
subject keywordsNOZZLE GEOMETRY
subject keywordsSHOCK WAVES
subject keywordsSOUND PRESSURE
subject keywordsSTATIC TESTS
subject keywordsSUPERSONIC FLOW
subject keywordsTURBULENT FLOW
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DSpace software copyright © 2017-2020  DuraSpace
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