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A Requirements-Driven Optimization Method for Acoustic Treatment DesignAcoustic treatment designers have long been able to target specific noise sources inside turbofan engines. Facesheet porosity and cavity depth are key design variables of perforate-over-honeycomb liners that determine levels of noise suppression as well as the frequencies at which suppression occurs. Layers of these structures can be combined to create a robust attenuation spectrum that covers a wide range of frequencies. Looking to the future, rapidly-emerging additive manufacturing technologies are enabling new liners with multiple degrees of freedom, and new adaptive liners with variable impedance are showing promise. More than ever, there is greater flexibility and freedom in liner design. Subject to practical considerations, liner design variables may be manipulated to achieve a target attenuation spectrum. But characteristics of the ideal attenuation spectrum can be difficult to know. Many multidisciplinary system effects govern how engine noise sources contribute to community noise. Given a hardwall fan noise source to be suppressed, and using an analytical certification noise model to compute a community noise measure of merit, the optimal attenuation spectrum can be derived using multidisciplinary systems analysis methods. The subject of this paper is an analytical method that derives the ideal target attenuation spectrum that minimizes noise perceived by observers on the ground.
Document ID
20160010282
Acquisition Source
Glenn Research Center
Document Type
Conference Paper
Authors
Berton, Jeffrey J.
(NASA Glenn Research Center Cleveland, OH United States)
Date Acquired
August 12, 2016
Publication Date
May 30, 2016
Subject Category
Aircraft Propulsion And Power
Report/Patent Number
GRC-E-DAA-TN31751
Report Number: GRC-E-DAA-TN31751
Meeting Information
Meeting: AIAA/CEAS Aeroacoustics Conference
Location: Lyon
Country: France
Start Date: May 30, 2016
End Date: June 1, 2016
Sponsors: American Inst. of Aeronautics and Astronautics, Council of European Aerospace Societies (CEAS)
Funding Number(s)
WBS: WBS 081876.02.03.30.04
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
Keywords
Aircraft Noise
Aircraft Engines
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