The results of experimental investigations of puffing, micro-explosions and autoignition of composite fuel/water droplets free falling in a high temperature air are presented. The measurements were performed for non-mixed and premixed Diesel fuel/water and rapeseed oil/water droplets. Air temperature was in the range 850–1100 °C, initial droplet radii were in the range 0.62–1.34 mm, and relative volume fractions of fuel (Diesel fuel or rapeseed oil) were in the range 3–97%. It is shown that the time to micro-explosion decreases with increasing temperature, weakly depends on the volume fraction of fuel, and increases with increasing droplet sizes. The latter trend is shown to be consistent with the prediction of the previously developed simp...
5th International Conference on Computational Heat and Mass Transfer, Canmore, CANADA, 2007Internati...
5th International Conference on Computational Heat and Mass Transfer, Canmore, CANADA, 2007Internati...
The physics of water-in-oil emulsion droplet microexplosion/puffing has been investigated using high...
Some of the most recent experimental and modelling results concerning the puffing/microexplosion of ...
The results of experimental and theoretical investigation of the mutual effects of three composite D...
The paper is focused on detailed experimental investigation of puffing and micro-explosions in compo...
A new approach to modelling puffing and micro-explosion in composite water/fuel droplets is proposed...
Adding water to fuel droplets is known to lead to puffing and micro-explosion. Puffing and micro-exp...
A new simple model for the puffing/micro-explosion of water-fuel emulsion droplets is suggested. The...
Dynamics of puffing and micro-explosion phenomena occurring in ternary fuel emulsion droplets under ...
Nucleation inception of composite droplets at slow to intermediate heating rates is examined both ex...
The results of the experimental and theoretical investigations of the mutual effect on their puffing...
The number and size distributions of the water dispersed phase have a significant effect on both the...
Emulsified fuels considered as a promising alternative fuel that could solve and meet the increasing...
5th International Conference on Computational Heat and Mass Transfer, Canmore, CANADA, 2007Internati...
5th International Conference on Computational Heat and Mass Transfer, Canmore, CANADA, 2007Internati...
5th International Conference on Computational Heat and Mass Transfer, Canmore, CANADA, 2007Internati...
The physics of water-in-oil emulsion droplet microexplosion/puffing has been investigated using high...
Some of the most recent experimental and modelling results concerning the puffing/microexplosion of ...
The results of experimental and theoretical investigation of the mutual effects of three composite D...
The paper is focused on detailed experimental investigation of puffing and micro-explosions in compo...
A new approach to modelling puffing and micro-explosion in composite water/fuel droplets is proposed...
Adding water to fuel droplets is known to lead to puffing and micro-explosion. Puffing and micro-exp...
A new simple model for the puffing/micro-explosion of water-fuel emulsion droplets is suggested. The...
Dynamics of puffing and micro-explosion phenomena occurring in ternary fuel emulsion droplets under ...
Nucleation inception of composite droplets at slow to intermediate heating rates is examined both ex...
The results of the experimental and theoretical investigations of the mutual effect on their puffing...
The number and size distributions of the water dispersed phase have a significant effect on both the...
Emulsified fuels considered as a promising alternative fuel that could solve and meet the increasing...
5th International Conference on Computational Heat and Mass Transfer, Canmore, CANADA, 2007Internati...
5th International Conference on Computational Heat and Mass Transfer, Canmore, CANADA, 2007Internati...
5th International Conference on Computational Heat and Mass Transfer, Canmore, CANADA, 2007Internati...
The physics of water-in-oil emulsion droplet microexplosion/puffing has been investigated using high...