This article will discuss the combustion of metal nanoparticles and explain the burn time dependence on particle size. In contrary to common belief in the power law (tb~d0.3), which, in our knowledge, is simply an experimental fit to data, we propose the logarithmic law (tb~ln(d)) that describes well the known results on nano-aluminum combustion. We derived the logarithmic dependence from a simple model taking into account the energy balance on the surface of a burning metal nanoparticle. The model in question is based on the small energy accommodation coefficient (EAC), which was recently utilized to solve experimental puzzles such as the significant temperature gap between the burning nanoparticle and the environment. A discussion on EAC,...
This work deals with the study of ignition and explosion characteristics of nanoparticles. It has be...
An experimental study has been conducted to determine §ame propa-gation velocities in micro- (6 µm) ...
A general theory of ignition and combustion of nano- and micron-sized aluminum particles is develope...
A heterogeneous shock tube was used to ignite and measure the combustion behavior of the nano-alumin...
Nano aluminum particles have received considerable attention in the combustion community; their phys...
Nano aluminum particles have received considerable attention in the combustion community; their phys...
The present work reports a simple theoretical model to calculate the effect of the particle size on ...
A heterogeneous shock tube was used to ignite and measure the combustion behavior of the nano-alumin...
The present work reports a simple theoretical model to calculate the effect of the particle size on ...
The present work reports a simple theoretical model to calculate the effect of the particle size on ...
The combustion ofmetallic particlesis analogous to the combustion of hydrocarbon particles andthe pa...
While ultrafine metal particles offer the possibility of very high energy density fuels, there is co...
While the nano-sized energetic materials are featured with ultra-high energy density, the ubiquitous...
Ignition prediction of aluminum particle is of great significance for a variety of propulsion and po...
International audienceThe aim of the present work is to reduce the burning time of aluminum particle...
This work deals with the study of ignition and explosion characteristics of nanoparticles. It has be...
An experimental study has been conducted to determine §ame propa-gation velocities in micro- (6 µm) ...
A general theory of ignition and combustion of nano- and micron-sized aluminum particles is develope...
A heterogeneous shock tube was used to ignite and measure the combustion behavior of the nano-alumin...
Nano aluminum particles have received considerable attention in the combustion community; their phys...
Nano aluminum particles have received considerable attention in the combustion community; their phys...
The present work reports a simple theoretical model to calculate the effect of the particle size on ...
A heterogeneous shock tube was used to ignite and measure the combustion behavior of the nano-alumin...
The present work reports a simple theoretical model to calculate the effect of the particle size on ...
The present work reports a simple theoretical model to calculate the effect of the particle size on ...
The combustion ofmetallic particlesis analogous to the combustion of hydrocarbon particles andthe pa...
While ultrafine metal particles offer the possibility of very high energy density fuels, there is co...
While the nano-sized energetic materials are featured with ultra-high energy density, the ubiquitous...
Ignition prediction of aluminum particle is of great significance for a variety of propulsion and po...
International audienceThe aim of the present work is to reduce the burning time of aluminum particle...
This work deals with the study of ignition and explosion characteristics of nanoparticles. It has be...
An experimental study has been conducted to determine §ame propa-gation velocities in micro- (6 µm) ...
A general theory of ignition and combustion of nano- and micron-sized aluminum particles is develope...