Direct Numerical Simulations of Type Ia Supernovae Flames II

Direct Numerical Simulations of Type Ia Supernovae Flames II
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Total Pages: 5
Release: 2004
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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 the Landau-Darrieus, Rayleigh-Taylor, and Kelvin-Helmholtz instabilities, which serve to accelerate it to a large fraction of the speed of sound. We investigate the Rayleigh-Taylor unstable flame at the transition from the flamelet regime to the distributed-burning regime, around densities of 10e7 gm/cc, through detailed, fully resolved simulations. A low Mach number, adaptive mesh hydrodynamics code is used to achieve the necessary resolution and long time scales. As the density is varied, we see a fundamental change in the character of the burning--at the low end of the density range the Rayleigh-Taylor instability dominates the burning, whereas at the high end the burning suppresses the instability. In all cases, significant acceleration of the flame is observed, limited only by the size of the domain we are able to study. We discuss the implications of these results on the potential for a deflagration to detonation transition.


Direct Numerical Simulations of Type Ia Supernovae Flames II
Language: en
Pages: 5
Authors:
Categories:
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
Direct Numerical Simulations of Type Ia Supernovae Flames I
Language: en
Pages:
Authors:
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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
Three-dimensional Numerical Simulations of Rayleigh-Taylorunstable Flames in Type Ia Supernovae
Language: en
Pages:
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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
High Performance Computing
Language: en
Pages: 506
Authors: Julian M. Kunkel
Categories: Computers
Type: BOOK - Published: 2016-06-14 - Publisher: Springer

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This book constitutes the refereed proceedings of the 31st International Conference, ISC High Performance 2016 [formerly known as the International Supercomputi