We present a statistical model which shows the influence of turbulence on a thermonuclear flame propagating in C+O white dwarf matter. Based on a Monte Carlo description of turbulence, it provides a method for investigating the physics in the so-called distributed burning regime. Using this method we perform numerical simulations of turbulent flames and show that in this particular regime the flamelet model for the turbulent flame velocity loses its validity. In fact, at high turbulent intensities burning in the distributed regime can lead to a deceleration of the turbulent flame and thus induces a competing process to turbulent effects that cause a higher flame speed. It is also shown that in dense C+O matter turbulent heat transport is de...
A Type Ia 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 ...
We study the dynamics of thermonuclear flames propagating in fuel stirred by stochastic forcing. The...
ABSTRACT At a density near a few ×10 7 g cm −3 , the subsonic burning in a Type Ia supernova (SN) en...
The deflagration mode of flame propagation in Type Ia supernova (SN Ia) models requires a correct de...
The large range of time and length scales involved in type Ia supernovae (SN Ia) requires the use of...
A numerical scheme is presented which allows us to compute numerically the coupling between large sc...
The large range of time and length scales involved in type Ia supernovae (SN Ia) requires the use of...
The deflagration mode of flame propagation in type Ia supernova (SN Ia) models requires a correct de...
We examine the effects of turbulent intermittency on the deflagration to detonation transition (DDT)...
We examine the effects of turbulent intermittency on the deflagration to detonation transition (DDT)...
The dynamics of the explosive burning process is highly sensitive to the flame speed model in numeri...
Flame instabilities play a dominant role in accelerating the burning front to a large fraction of th...
A Type Ia 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...
A Type la supernova explosion likely begins as a nuclear runaway near the center of a carbon-oxygen ...
We study the dynamics of thermonuclear flames propagating in fuel stirred by stochastic forcing. The...
ABSTRACT At a density near a few ×10 7 g cm −3 , the subsonic burning in a Type Ia supernova (SN) en...
The deflagration mode of flame propagation in Type Ia supernova (SN Ia) models requires a correct de...
The large range of time and length scales involved in type Ia supernovae (SN Ia) requires the use of...
A numerical scheme is presented which allows us to compute numerically the coupling between large sc...
The large range of time and length scales involved in type Ia supernovae (SN Ia) requires the use of...
The deflagration mode of flame propagation in type Ia supernova (SN Ia) models requires a correct de...
We examine the effects of turbulent intermittency on the deflagration to detonation transition (DDT)...
We examine the effects of turbulent intermittency on the deflagration to detonation transition (DDT)...
The dynamics of the explosive burning process is highly sensitive to the flame speed model in numeri...
Flame instabilities play a dominant role in accelerating the burning front to a large fraction of th...
A Type Ia 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...
A Type la supernova explosion likely begins as a nuclear runaway near the center of a carbon-oxygen ...
We study the dynamics of thermonuclear flames propagating in fuel stirred by stochastic forcing. The...