The complex multiscale physics of nano-particle laden functional droplets in a reacting environment is of fundamental and applied significance for a wide variety of applications ranging from thermal sprays to pharmaceutics to modern day combustors using new brands of bio-fuels. Formation of homogenous nucleated bubbles at the superheat limit inside vaporizing droplets (with or without nanoparticles) represents an unstable system. Here we show that self-induced boiling in burning functional pendant droplets can produce severe volumetric shape oscillations. Internal pressure build-up due to ebullition activity ejects bubbles from the droplet domain causing undulations on the droplet surface and oscillations in bulk. Through experiments, we es...
Understanding the combustion characteristics of fuel droplets laden with energetic nanoparticles (NP...
We report detailed analyses of evaporation and atomisation characteristics of nanofuel droplets in a...
We report detailed analyses of evaporation and atomisation characteristics of nanofuel droplets in a...
The complex multiscale physics of nano-particle laden functional droplets in a reacting environment ...
The complex multiscale physics of nanoparticle laden functional droplets in a reacting environment i...
Self-induced internal boiling in burning functional droplets has been observed to induce severe bulk...
Self-induced internal boiling in burning functional droplets has been observed to induce severe bulk...
Self-induced internal boiling in burning functional droplets has been observed to induce severe bulk...
Self-induced internal boiling in burning functional droplets has been observed to induce severe bulk...
Multiscale combustion dynamics, shape oscillations, secondary atomization, and precipitate formation...
Multiscale combustion dynamics, shape oscillations, secondary atomization, and precipitate formation...
We examine the complete sequence of events associated with the transition in the topology of a singl...
We examine the complete sequence of events associated with the transition in the topology of a singl...
We study thermally induced atomization modes in contact free (acoustically levitated) nanoparticle l...
Understanding the combustion characteristics of fuel droplets laden with energetic nanoparticles (NP...
Understanding the combustion characteristics of fuel droplets laden with energetic nanoparticles (NP...
We report detailed analyses of evaporation and atomisation characteristics of nanofuel droplets in a...
We report detailed analyses of evaporation and atomisation characteristics of nanofuel droplets in a...
The complex multiscale physics of nano-particle laden functional droplets in a reacting environment ...
The complex multiscale physics of nanoparticle laden functional droplets in a reacting environment i...
Self-induced internal boiling in burning functional droplets has been observed to induce severe bulk...
Self-induced internal boiling in burning functional droplets has been observed to induce severe bulk...
Self-induced internal boiling in burning functional droplets has been observed to induce severe bulk...
Self-induced internal boiling in burning functional droplets has been observed to induce severe bulk...
Multiscale combustion dynamics, shape oscillations, secondary atomization, and precipitate formation...
Multiscale combustion dynamics, shape oscillations, secondary atomization, and precipitate formation...
We examine the complete sequence of events associated with the transition in the topology of a singl...
We examine the complete sequence of events associated with the transition in the topology of a singl...
We study thermally induced atomization modes in contact free (acoustically levitated) nanoparticle l...
Understanding the combustion characteristics of fuel droplets laden with energetic nanoparticles (NP...
Understanding the combustion characteristics of fuel droplets laden with energetic nanoparticles (NP...
We report detailed analyses of evaporation and atomisation characteristics of nanofuel droplets in a...
We report detailed analyses of evaporation and atomisation characteristics of nanofuel droplets in a...