User: Guest  Login
Document type:
Bachelorarbeit
Author(s):
Markus Brandl
Title:
Simulation of Self Sustained Thermoacoustic Oscillations by Coupling of a Low-Order Acoustic Network Model with a Level-Set Solver
Translated title:
Simulation von selbsterregten Thermoakustischen Schwingungen durch Kopplung eines akustischen Netzwerk-Modells mit einem Level-Set Löser
Abstract:
Thermoacoustic oscillations can happen in nearly every device which includes a combustion process. The reason therefore is that the combustion and the acoustics of the system inter- act. This leads to a coupled so-called thermoacoustic system which can either be stable or unstable. A stable system dampens out small perturbations. The other possibility is that the system gets unstable and starts to oscillate. At higher sound pressure levels this can lead to a failure of the system. In order...     »
Translated abstract:
Thermoacoustic oscillations can happen in nearly every device which includes a combustion process. The reason therefore is that the combustion and the acoustics of the system inter- act. This leads to a coupled so-called thermoacoustic system which can either be stable or unstable. A stable system dampens out small perturbations. The other possibility is that the system gets unstable and starts to oscillate. At higher sound pressure levels this can lead to a failure of the system. In order...     »
Keywords:
Level-Set, Thermoacoustic, Limit Cycle, Flame Describing Function
Subject:
MAS Maschinenbau
DDC:
620 Ingenieurwissenschaften
Advisor:
Steinbacher, Thomas
Referee:
Polifke, Wolfgang H. (Prof., Ph.D.)
Date of acceptation:
28.09.2016
Year:
2016
Pages:
76
Language:
en
Language from translation:
en
University:
Technische Universität München
Faculty:
Fakultät für Maschinenwesen
Presentation date:
26.09.2016
 BibTeX