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Measured and calculated acoustic attenuation rates of tuned resonator arrays for two surface impedance distribution models with flowAn experiment was performed to validate two analytical models for predicting low frequency attenuation of duct liner configurations built from an array of seven resonators that could be individually tuned via adjustable cavity depths. These analytical models had previously been developed for high frequency aero-engine inlet duct liner design. In the low frequency application, the liner surface impedance distribution is unavoidably spatially varying by virtue of available fabrication techniques. The characteristic length of this spatial variation may be a significant fraction of the acoustic wavelength. Comparison of measured and predicted attenuation rates and transmission losses for both modal decomposition and finite element propagation models were in good to excellent agreement for a test frequency range that included the first and second cavity resonance frequencies. This was true for either of two surface impedance distribution modeling procedures used to simplify the impedance boundary conditions. In the presence of mean flow, measurements revealed a fine scale structure of acoustic hot spots in the attenuation and phase profiles. These details were accurately predicted by the finite element model. Since no impedance changes due to mean flow were assumed, it is concluded that this fine scale structure was due to convective effects of the mean flow interacting with the surface impedance nonuniformities.
Document ID
19880008056
Acquisition Source
Legacy CDMS
Document Type
Technical Publication (TP)
Authors
Parrott, Tony L.
(NASA Langley Research Center Hampton, VA., United States)
Abrahamson, A. Louis
(Comtek Co. Grafton, VA., United States)
Jones, Michael G.
(PRC Kentron, Inc. Hampton, Va., United States)
Date Acquired
September 5, 2013
Publication Date
January 1, 1988
Subject Category
Acoustics
Report/Patent Number
L-16352
NASA-TP-2766
NAS 1.60:2766
Report Number: L-16352
Report Number: NASA-TP-2766
Report Number: NAS 1.60:2766
Accession Number
88N17440
Funding Number(s)
PROJECT: RTOP 505-61-11-02
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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