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A Hybrid Adjoint Network Model for Thermoacoustic Optimization

Accepted version
Peer-reviewed

Type

Conference Object

Change log

Authors

Schaefer, Felicitas 
Polifke, Wolfgang 

Abstract

A method is proposed that allows the computation of the continuous adjoint of a thermoacoustic network model based on the discretized direct equations. This hybrid approach exploits the self-adjoint character of the duct element, which allows all jump conditions to be derived from the direct scattering matrix. In this way, the need to derive the adjoint equations for every element of the network model is eliminated. This methodology combines the advantages of the discrete and continuous adjoint, as the accuracy of the continuous adjoint is achieved while maintaining the flexibility of the discrete adjoint. It is demonstrated how the obtained adjoint system may be utilized to optimize a thermoacoustic configuration by determining the optimal damper setting for an annular combustor.

Description

Keywords

Journal Title

Journal of Engineering for Gas Turbines and Power

Conference Name

ASME Turbo Expo 2021

Journal ISSN

0742-4795
1528-8919

Volume Title

Publisher

American Society of Mechanical Engineers

Rights

All rights reserved
Sponsorship
Royal Academy of Engineering (RAEng)
RAEng Research Fellowships. The authors acknowledge the support of the Technical University of Munich - Institute for Advanced Study,funded by the German Excellence Initiative and the European Union Seventh Framework Programme undergrant agreement no. 291763.