Reinecke , M. and Hillebrandt , W. and Niemeyer , J.C. and Klein, R. and Gröbl, A. (1999) A new model for deflagration fronts in reactive fluids. Astronomy and Astrophysics, 347 (1999A&A...347..724R). 724-733 . ISSN 0004-6361 (Print) 1432-0746 (Online)
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Official URL: http://aa.springer.de/bibs/9347002/2300724/small.h...
Abstract
We present a new way of modeling deflagration fronts in reactive fluids, the main emphasis being on turbulent thermonuclear deflagration fronts in white dwarfs undergoing a Type Ia supernova explosion. Our approach is based on a level set method which treats the front as a mathematical discontinuity and allows full coupling between the front geometry and the flow field \citep {smiljanovski-etal-97}. With only minor modifications, this method can also be applied to describe contact discontinuities. Two different implementations are described and their physically correct behaviour for simple testcases is shown. First results of the method applied to the concrete problems of Type Ia supernovae and chemical hydrogen combustion are briefly discussed; a more extensive analysis of our astrophysical simulations is given in \cite{reinecke-etal-98b}.
Item Type: | Article |
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Uncontrolled Keywords: | HYDRODYNAMICS, NUCLEAR REACTIONS, NUCLEOSYNTHESIS, ABUNDANCES, TURBULENCE, METHODS: NUMERICAL, STARS: SUPERNOVAE: GENERAL |
Subjects: | Mathematical and Computer Sciences > Mathematics > Applied Mathematics |
Divisions: | Department of Mathematics and Computer Science > Institute of Mathematics > Geophysical Fluid Dynamics Group |
ID Code: | 521 |
Deposited By: | Ulrike Eickers |
Deposited On: | 08 Jul 2009 14:38 |
Last Modified: | 08 Jul 2009 14:38 |
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