Direct Numerical Simulations of Type Ia Supernovae Flames I

Direct Numerical Simulations of Type Ia Supernovae Flames I
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Release: 2003
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Planar flames are intrinsically unstable in open domains due to the thermal expansion across the burning front--the Landau-Darrieus instability. This instability leads to wrinkling and growth of the flame surface, and corresponding acceleration of the flame, until it is stabilized by cusp formation. We look at the Landau-Darrieus in stability for C/O thermonuclear flames at conditions relevant to the late stages of a Type Ia supernova explosion. Two-dimensional direct numerical simulations of both single-mode and multi-mode perturbations using a low Mach number hydrodynamics code are presented. We show the effect of the instability on the flame speed as a function of both the density and domain size, demonstrate the existence of the small scale cutoff to the growth of the instability, and look for the proposed breakdown of the non-linear stabilization at low densities. The effects of curvature on the flame as quantified through measurements of the growth rate and computation of the corresponding Markstein number. While accelerations of a few percent are observed, they are too small to have any direct outcome on the supernova explosion.


Direct Numerical Simulations of Type Ia Supernovae Flames I
Language: en
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Type: BOOK - Published: 2003 - Publisher:

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Planar flames are intrinsically unstable in open domains due to the thermal expansion across the burning front--the Landau-Darrieus instability. This instabilit
Direct Numerical Simulations of Type Ia Supernovae Flames II
Language: en
Pages: 5
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Type: BOOK - Published: 2004 - Publisher:

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A Type Ia supernova explosion likely begins as a nuclear runaway near the center of a carbon-oxygen white dwarf. The outward propagating flame is unstable to th
Three-dimensional Numerical Simulations of Rayleigh-Taylorunstable Flames in Type Ia Supernovae
Language: en
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Type: BOOK - Published: 2005 - Publisher:

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Flame instabilities play a dominant role in accelerating the burning front to a large fraction of the speed of sound in a Type Ia supernova. We present a three-
Combustion Physics
Language: en
Pages: 620
Authors: Michael A. Liberman
Categories: Science
Type: BOOK - Published: 2021-11-14 - Publisher: Springer Nature

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This book provides the latest achievements and original research work in physics of combustion processes and application of the methods developed in combustion
Interdisciplinary Aspects of Turbulence
Language: en
Pages: 353
Authors: Wolfgang Hillebrandt
Categories: Science
Type: BOOK - Published: 2008-11-20 - Publisher: Springer Science & Business Media

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Written by experts from geophysics, astrophysics and engineering, this unique book on the interdisciplinary aspects of turbulence offers recent advances in the