Eigemann, Jonas; Beck, Christian; Kempf, Andreas Markus:
A Method to Dampen Acoustic Waves in Compressible Reactive Flow Simulations
In: Flow, Turbulence and Combustion (2024), in press
2024Artikel/Aufsatz in ZeitschriftOA Hybrid
MaschinenbauFakultät für Ingenieurwissenschaften » Maschinenbau und Verfahrenstechnik » Institut für Energie- und Material-Prozesse (EMPI) » Fluiddynamik
Damit verbunden: 1 Publikation(en)
Titel in Englisch:
A Method to Dampen Acoustic Waves in Compressible Reactive Flow Simulations
Autor*in:
Eigemann, JonasUDE
LSF ID
62018
ORCID
0009-0006-7692-5896ORCID iD
Sonstiges
der Hochschule zugeordnete*r Autor*in
korrespondierende*r Autor*in
;
Beck, Christian
;
Kempf, Andreas MarkusUDE
GND
1141085682
LSF ID
53356
ORCID
0000-0003-3627-4524ORCID iD
Sonstiges
der Hochschule zugeordnete*r Autor*in
Erscheinungsjahr:
2024
Open Access?:
OA Hybrid
Web of Science ID
Scopus ID
Notiz:
in press
Sprache des Textes:
Englisch
Schlagwort, Thema:
Acoustics ; Compressible flow ; Reactive flow
Ressourcentyp:
Text

Abstract in Englisch:

A novel technique is presented to improve the initialization of compressible combustion LES, DNS or URANS by numerically turning the flame into a damper to quickly remove (artificial) pressure fluctuations and acoustic energy from the system. This is achieved by modifying the pressure dependency of the heat release rate, effectively modifying the Rayleigh Integral to achieve negative values, so that the acoustic energy is quickly removed from the system. The technique can (a) reduce the cost of simulations (by shortening the initialization), (b) contribute to stabilize the simulation, (c) help to avoid unrealistic thermoacoustic modes and, (d) potentially, be modified to compensate for excessive numerical dissipation of acoustic energy. Examples from LES of a thermoacoustic test case are presented to demonstrate the effective stabilization achieved.