The second part of a three-part report on the effects of acoustic excitation on jet mixing includes the results of an experimental investigation directed at resolving the question of poor excitability of some of the heated jets. The theoretical predictions discussed in Part 1 are examined to find explanations for the observed discrepancies between the measured and the predicted results. Additional testing was performed by studying the self excitation of the shock containing hot jets and also by exciting the jet by sound radiated through source tubes located externally around the periphery of the jet. The effects of nozzle-exit boundary layer conditions on jet excitability was also investigated. It is concluded that high-speed, heated jet mi...
A prediction method based on the generalized acoustic analogy is presented, and used to evaluate aer...
Round jets having a Mach number of 0.9 and a Reynolds number of 1700 are computed by di...
Progress associated with research in (1) physics and prediction of turbulent mixing noise from super...
The effects of relatively strong upstream acoustic excitation on the mixing of heated jets with the ...
This is Part 3 of a report on the excitability of heated jets under the influence of acoustic excita...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/97078/1/AIAA2012-2259.pd
Heated high speed subsonic and supersonic jets operating on- or off-design are a source of noise tha...
Acoustic research related to jet flows has established that sound, by amplifying the naturally occur...
Noise measurements of heated axisymmetric jets at fixed supersonic acoustic Mach number indicate tha...
AbstractLarge eddy simulation was performed for two jets, i.e. a cold jet and its heated counterpart...
Experiments are performed in a 24.4 mm diameter choked circular hot and cold jets issuing from a sha...
AbstractResults from recent LES studies of high-speed jet flows and its near and far-field noise (Me...
The work of Viswanathan and others in recent years has raised serious questions about jet noise data...
Some of the background to contemporary jet aeroacoustics is addressed. Then scaling laws for noise g...
A code for predicting supersonic jet broadband shock-associated noise was assessed us- ing a databas...
A prediction method based on the generalized acoustic analogy is presented, and used to evaluate aer...
Round jets having a Mach number of 0.9 and a Reynolds number of 1700 are computed by di...
Progress associated with research in (1) physics and prediction of turbulent mixing noise from super...
The effects of relatively strong upstream acoustic excitation on the mixing of heated jets with the ...
This is Part 3 of a report on the excitability of heated jets under the influence of acoustic excita...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/97078/1/AIAA2012-2259.pd
Heated high speed subsonic and supersonic jets operating on- or off-design are a source of noise tha...
Acoustic research related to jet flows has established that sound, by amplifying the naturally occur...
Noise measurements of heated axisymmetric jets at fixed supersonic acoustic Mach number indicate tha...
AbstractLarge eddy simulation was performed for two jets, i.e. a cold jet and its heated counterpart...
Experiments are performed in a 24.4 mm diameter choked circular hot and cold jets issuing from a sha...
AbstractResults from recent LES studies of high-speed jet flows and its near and far-field noise (Me...
The work of Viswanathan and others in recent years has raised serious questions about jet noise data...
Some of the background to contemporary jet aeroacoustics is addressed. Then scaling laws for noise g...
A code for predicting supersonic jet broadband shock-associated noise was assessed us- ing a databas...
A prediction method based on the generalized acoustic analogy is presented, and used to evaluate aer...
Round jets having a Mach number of 0.9 and a Reynolds number of 1700 are computed by di...
Progress associated with research in (1) physics and prediction of turbulent mixing noise from super...