Evaluating an Additive Manufactured Acoustic Metamaterial Using the Advanced Noise Control Fan

Author:

Ross Eoghan P.1ORCID,Figueroa-Ibrahim Kelvin M.2,Morris Scott C.2,Sutliff Daniel L.3,Bennett Gareth J.1ORCID

Affiliation:

1. The University of Dublin, Dublin D02 PN40, Ireland

2. University of Notre Dame, South Bend, Indiana 46556

3. NASA Glenn Research Center, Cleveland, Ohio 44135

Abstract

This paper examines the performance of a 3D printed acoustic metamaterial as an acoustic treatment for aircraft engine nacelles in the Advanced Noise Control Fan. As the level of air travel continues to increase, so too does the demand for better noise-reduction technologies for aircraft. Engines are one of the two main sources of noise generated by aircraft, with fan noise, in particular, being of concern due to its broadband and tonal contributions. Small and lightweight methods of addressing both broadband and tonal noise are necessary due to the limitations presented by the current engine design. Presented in this paper is a novel acoustic metamaterial that has undergone design optimization for broadband noise reduction. The final design was produced using 3D printing and tested using the Advanced Noise Control Fan at the University of Notre Dame. It was found that the material is capable of reducing the first harmonic of the blade passing frequency by up to 18.5 dB, with an overall noise reduction of 3.7 dB.

Funder

Glenn Research Center

Naughton Graduate Student Exchange Program of the Naughton Foundation

Horizon 2020 Framework Programme

Publisher

American Institute of Aeronautics and Astronautics (AIAA)

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