The University of Southampton
University of Southampton Institutional Repository

Analytical investigation of non-adiabatic effects on the dynamics of sound reflection and transmission in a combustor

Analytical investigation of non-adiabatic effects on the dynamics of sound reflection and transmission in a combustor
Analytical investigation of non-adiabatic effects on the dynamics of sound reflection and transmission in a combustor
Acoustics of a simplified, non-adiabatic combustor chamber, including a duct followed by a downstream exit nozzle, are considered. This system features heat transfer to the environment, and therefore involves mean axial temperature gradient along the duct and the nozzle. The effect of heat transfer on the dynamics of the acoustic reflection and transmission in the duct and nozzle is investigated analytically. These involve the development of analytical expressions for the response of non-adiabatic nozzles through compact acoustic modeling and also the effective length approach. Further, an existing work on the dynamics of heat transferring ducts is extended and combined with that of the nozzles. The acoustic responses of the combined non-adiabatic system are, subsequently, characterized by analyzing the net reflection and transmission of an incident acoustic wave. The results show that heat transfer can considerably modify the dynamic behavior of the acoustic reflections and transmissions. Due to the multiple reflections in the system, the phase response features significant irregularities. It is argued that the observed modifications in the chamber acoustics can noticeably affect the thermoacoustics of the system.
1359-4311
553-567
Hosseinalipour, S.M.
f5991e33-baff-440c-875d-1186e53dd782
Fattahi, A.
16a647dd-25c2-4946-be84-a87f90bc4a24
Karimi, N.
620646d6-27c9-4e1e-948f-f23e4a1e773a
Hosseinalipour, S.M.
f5991e33-baff-440c-875d-1186e53dd782
Fattahi, A.
16a647dd-25c2-4946-be84-a87f90bc4a24
Karimi, N.
620646d6-27c9-4e1e-948f-f23e4a1e773a

Hosseinalipour, S.M., Fattahi, A. and Karimi, N. (2016) Analytical investigation of non-adiabatic effects on the dynamics of sound reflection and transmission in a combustor. Applied Thermal Engineering, 98, 553-567. (doi:10.1016/j.applthermaleng.2015.12.116).

Record type: Article

Abstract

Acoustics of a simplified, non-adiabatic combustor chamber, including a duct followed by a downstream exit nozzle, are considered. This system features heat transfer to the environment, and therefore involves mean axial temperature gradient along the duct and the nozzle. The effect of heat transfer on the dynamics of the acoustic reflection and transmission in the duct and nozzle is investigated analytically. These involve the development of analytical expressions for the response of non-adiabatic nozzles through compact acoustic modeling and also the effective length approach. Further, an existing work on the dynamics of heat transferring ducts is extended and combined with that of the nozzles. The acoustic responses of the combined non-adiabatic system are, subsequently, characterized by analyzing the net reflection and transmission of an incident acoustic wave. The results show that heat transfer can considerably modify the dynamic behavior of the acoustic reflections and transmissions. Due to the multiple reflections in the system, the phase response features significant irregularities. It is argued that the observed modifications in the chamber acoustics can noticeably affect the thermoacoustics of the system.

This record has no associated files available for download.

More information

Published date: 5 April 2016

Identifiers

Local EPrints ID: 508883
URI: http://eprints.soton.ac.uk/id/eprint/508883
ISSN: 1359-4311
PURE UUID: c43680cc-6b79-4897-a508-13023ce68ad7
ORCID for N. Karimi: ORCID iD orcid.org/0000-0002-4559-6245

Catalogue record

Date deposited: 05 Feb 2026 17:49
Last modified: 06 Feb 2026 03:12

Export record

Altmetrics

Contributors

Author: S.M. Hosseinalipour
Author: A. Fattahi
Author: N. Karimi ORCID iD

Download statistics

Downloads from ePrints over the past year. Other digital versions may also be available to download e.g. from the publisher's website.

View more statistics

Atom RSS 1.0 RSS 2.0

Contact ePrints Soton: eprints@soton.ac.uk

ePrints Soton supports OAI 2.0 with a base URL of http://eprints.soton.ac.uk/cgi/oai2

This repository has been built using EPrints software, developed at the University of Southampton, but available to everyone to use.

We use cookies to ensure that we give you the best experience on our website. If you continue without changing your settings, we will assume that you are happy to receive cookies on the University of Southampton website.

×