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Improved noise predictions from subsonic jets at Mach 0.75 using URANS calculations
Published in
2009
Volume: 9
   
Issue: 8
Pages: 460 - 474
Abstract
Numerical simulations of round, compressible, turbulent jets at Mach 0.75 have been carried out. Two jets, one cold and hot, have been simulated. Overall Sound Pressure Levels (SPL) at far-field observer locations have been calculated using Ffowcs Williams-Hawkings equation. Axial and radial variation of the mean axial velocity, axial variation of 1/2/u'u', 1/2/v'v', radial variation of 1/2/u'v' and overall SPL levels are compared with experimental data reported in the literature. The potential core length is predicted well, but the predicted centreline velocity decay is faster than the measured value. The URANS calculations are able to predict the absolute values for the overall SPL, and the trends to within ±4dB of the experimental value for most of the receivers. The calculations predict the trends as well as absolute values of the variations of the spectral amplitude for receivers at 30 Dj but not 50 Dj. Copyright © 2009, Inderscience Publishers.
About the journal
JournalProgress in Computational Fluid Dynamics
ISSN14684349
Open AccessNo
Concepts (24)
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    Absolute values
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    Axial variations
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    Axial velocity
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    Experimental data
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    Experimental values
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    Far-field
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    FFOWCS WILLIAMS-HAWKINGS EQUATION
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    NOISE PREDICTIONS
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    Numerical simulation
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    Numerical simulations
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    Overall sound pressure level
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    Radial variations
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    SPECTRAL AMPLITUDE
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    SUBSONIC JET NOISE
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    SUBSONIC JETS
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    Turbulent jet
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    URANS
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    VELOCITY DECAY
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    Acoustic noise
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    Acoustic noise measurement
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    Computer simulation
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    Computer simulation languages
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    Mathematical models
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    Jets