The large range of time and length scales involved in type Ia supernovae (SN Ia) requires the use of flame models. As a prelude to exploring various options for flame models, we consider, in this paper, high-resolution three-dimensional simulations of the small-scale dynamics of nuclear flames in the supernova environment in which the details of the flame structure are fully resolved. The range of densities examined, 1 to 8 x 107 g cm-3, spans the transition from the laminar flamelet regime to the distributed burning regime where small scale turbulence disrupts the flame. The use of a low Mach number algorithm facilitates the accurate resolution of the thermal structure of the flame and the inviscid turbulent kinetic energy cascade, while...
A Type la supernova explosion likely begins as a nuclear runaway near the center of a carbon-oxygen ...
A Type Ia supernova explosion likely begins as a nuclear runaway near the center of a carbon-oxygen ...
Turbulent combustion is three-dimensional. Turbulence in a Type Ia supernova is driven on large scal...
The large range of time and length scales involved in type Ia supernovae (SN Ia) requires the use of...
ABSTRACT At a density near a few ×10 7 g cm −3 , the subsonic burning in a Type Ia supernova (SN) en...
Flame instabilities play a dominant role in accelerating the burning front to a large fraction of th...
Flame instabilities play a dominant role in accelerating the burning front to a large fraction of th...
Flame instabilities play a dominant role in accelerating the burning front to a large fraction of th...
Flame instabilities play a dominant role in accelerating the burning front to a large fraction of t...
We present a statistical model which shows the influence of turbulence on a thermonuclear flame prop...
The dynamics of the explosive burning process is highly sensitive to the flame speed model in numeri...
A numerical scheme is presented which allows us to compute numerically the coupling between large sc...
We extend a low Mach number hydrodynamics method developed for terrestrial combustion, to the study ...
We present a numerical investigation of the cellular burning regime in Type Ia supernova explosions...
A Type la supernova explosion likely begins as a nuclear runaway near the center of a carbon-oxygen ...
A Type la supernova explosion likely begins as a nuclear runaway near the center of a carbon-oxygen ...
A Type Ia supernova explosion likely begins as a nuclear runaway near the center of a carbon-oxygen ...
Turbulent combustion is three-dimensional. Turbulence in a Type Ia supernova is driven on large scal...
The large range of time and length scales involved in type Ia supernovae (SN Ia) requires the use of...
ABSTRACT At a density near a few ×10 7 g cm −3 , the subsonic burning in a Type Ia supernova (SN) en...
Flame instabilities play a dominant role in accelerating the burning front to a large fraction of th...
Flame instabilities play a dominant role in accelerating the burning front to a large fraction of th...
Flame instabilities play a dominant role in accelerating the burning front to a large fraction of th...
Flame instabilities play a dominant role in accelerating the burning front to a large fraction of t...
We present a statistical model which shows the influence of turbulence on a thermonuclear flame prop...
The dynamics of the explosive burning process is highly sensitive to the flame speed model in numeri...
A numerical scheme is presented which allows us to compute numerically the coupling between large sc...
We extend a low Mach number hydrodynamics method developed for terrestrial combustion, to the study ...
We present a numerical investigation of the cellular burning regime in Type Ia supernova explosions...
A Type la supernova explosion likely begins as a nuclear runaway near the center of a carbon-oxygen ...
A Type la supernova explosion likely begins as a nuclear runaway near the center of a carbon-oxygen ...
A Type Ia supernova explosion likely begins as a nuclear runaway near the center of a carbon-oxygen ...
Turbulent combustion is three-dimensional. Turbulence in a Type Ia supernova is driven on large scal...