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Low-frequency acoustic radiation from a flanged circular pipe at an inclined angle

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posted on 2022-03-11, 16:40 authored by Jialin SuJialin Su, Dong Yang, Aimee S. Morgans
The generic problem of low-frequency acoustic radiation through quiescent air from a circular pipe that is inclined with respect to its exit flange is studied in this work. The exit flange is taken to extend as an infinite plane away from the pipe opening. The analysis implements a hybrid method that combines modal expansions with the boundary element method. The reflection coefficient and pipe end correction for Helmholtz numbers (based on the pipe radius) less than 2.5 are calculated for various inclination angles up to 75°. Calculations are validated using simulations from the finite-element solver of the commercial software package COMSOL. The reflection coefficient and end correction predictions agree closely with the validation simulations yet differ notably from the results available in the literature. The solution obtained from the hybrid method is subsequently used to analyse the acoustic field at the pipe exit and in the downstream space. The key aspects of the governing physics pertaining to practical engineering applications at low frequencies are captured in a low-order approximation, which significantly reduces the degrees of freedom of the problem and provides generally good estimates of the reflection coefficient and end correction, as well as the downstream acoustic field.

Funding

ERC Consolidator Grant AFIRMATIVE (Grant No. 772080)

History

School

  • Aeronautical, Automotive, Chemical and Materials Engineering

Department

  • Aeronautical and Automotive Engineering

Published in

The Journal of the Acoustical Society of America

Volume

151

Issue

2

Pages

1142 - 1157

Publisher

Acoustical Society of America

Version

  • VoR (Version of Record)

Rights holder

© The Authors

Publisher statement

This is an Open Access Article. It is published by Acoustical Society of America under the Creative Commons Attribution 4.0 International Licence (CC BY 4.0). Full details of this licence are available at: https://creativecommons.org/licenses/by/4.0/

Acceptance date

2022-01-28

Publication date

2022-02-17

Copyright date

2022

ISSN

0001-4966

eISSN

1520-8524

Language

  • en

Depositor

Dr Jialin Su. Deposit date: 11 March 2022

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