User: Guest  Login
Document type:
Zeitschriftenaufsatz
Author(s):
Trummler, T.; Schmidt, S. J.; Adams, N. A.
Title:
Numerical investigation of non-condensable gas effect on vapor bubble collapse
Abstract:
We numerically investigate the effect of non-condensable gas inside a vapor bubble on bubble dynamics, collapse pressure, and pressure impact of spherical and aspherical bubble collapses. Free gas inside a vapor bubble has a damping effect that can weaken the pressure wave and enhance the bubble rebound. To estimate this effect numerically, we derive and validate a multi-component model for vapor bubbles containing gas. For the cavitating liquid and the non-condensable gas, we employ a homogeneo...     »
Dewey Decimal Classification:
620 Ingenieurwissenschaften
Journal title:
Physics of Fluids
Year:
2021
Journal volume:
33
Journal issue:
9
Pages contribution:
096107
Covered by:
Scopus
Language:
en
Fulltext / DOI:
doi:10.1063/5.0062399
Publisher:
AIP Publishing
E-ISSN:
1070-66311089-7666
Notes:
The authors gratefully acknowledge the Gauss Centre for Supercomputing e.V. (www.gauss-centre.eu) for funding this project by providing computing time on the GCS Supercomputers Super-MUC and Super-MUC-NG at Leibniz Supercomputing Centre (www.lrz.de).
Submitted:
05.07.2021
Accepted:
25.08.2021
Date of publication:
01.09.2021
TUM Institution:
Lehrstuhl für Aerodynamik und Strömungsmechanik
 BibTeX