In this work we present and apply a mathematical model to simulate the auto-ignition of isolated fuel droplets burning in microgravity conditions. The aim is to demonstrate the fundamental role of the lowtemperature mechanisms on the auto-ignition process and to show that several experimental observations cannot be explained without considering the formation of cool-flames around the burning droplet. Thus, in order to better clarify the importance of the low-temperature chemistry, a detailed kinetic scheme (with hundreds of species and thousands of reactions) was adopted to model the spontaneous ignition of isolated droplets of n-heptane, n-decane, and n-dodecane in air, in a wide range of operating conditions (with environment temperatu...
A quasi-steady numerical model has been developed to study fuel droplet evaporation and combustion i...
In this study, the fundamental problem of the ignition of a kerosene single droplet in a quiescent m...
The present work developed a numerical model to study the combustion of wellcharacterized drop clust...
In this work we present and apply a mathematical model to simulate the auto-ignition of isolated fue...
Fires are considered among the most dangerous accidents on manned spacecraft. That is why several pr...
[[abstract]]Autoignition of n-heptane droplets under microgravity is investigated numerically. The c...
A numerical model describing the combustion of isolated fuel droplets in microgravity based on a det...
A discussion covers a general mathematical model for the simulation of the vaporization and ignition...
Anomalous combustion of n-heptane droplets burning in microgravity conditions was recently experimen...
Detailed numerical simulations of isolated n-heptane droplets autoignition have been conducted at pr...
AbstractCool flames are commonly associated with engine-knock phenomenon in spark ignition engines a...
Recent droplet combustion experiments onboard the International Space Station (ISS) have revealed th...
Detailed numerical simulations of isolated n-decane droplets autoignition are presented for differen...
Droplet combustion experiments performed on board the International Space Station have shown that no...
A quasi-steady numerical model has been developed to study fuel droplet evaporation and combustion i...
In this study, the fundamental problem of the ignition of a kerosene single droplet in a quiescent m...
The present work developed a numerical model to study the combustion of wellcharacterized drop clust...
In this work we present and apply a mathematical model to simulate the auto-ignition of isolated fue...
Fires are considered among the most dangerous accidents on manned spacecraft. That is why several pr...
[[abstract]]Autoignition of n-heptane droplets under microgravity is investigated numerically. The c...
A numerical model describing the combustion of isolated fuel droplets in microgravity based on a det...
A discussion covers a general mathematical model for the simulation of the vaporization and ignition...
Anomalous combustion of n-heptane droplets burning in microgravity conditions was recently experimen...
Detailed numerical simulations of isolated n-heptane droplets autoignition have been conducted at pr...
AbstractCool flames are commonly associated with engine-knock phenomenon in spark ignition engines a...
Recent droplet combustion experiments onboard the International Space Station (ISS) have revealed th...
Detailed numerical simulations of isolated n-decane droplets autoignition are presented for differen...
Droplet combustion experiments performed on board the International Space Station have shown that no...
A quasi-steady numerical model has been developed to study fuel droplet evaporation and combustion i...
In this study, the fundamental problem of the ignition of a kerosene single droplet in a quiescent m...
The present work developed a numerical model to study the combustion of wellcharacterized drop clust...