We report detailed analyses of evaporation and atomisation characteristics of nanofuel droplets in a contactless environment (acoustic levitation) under external radiative heating. Two base fuels, ethanol and n-dodecane with a significant difference in their respective vapour-pressures, are considered. Nanoparticles (NPs) of cerium oxides (CeO2) are utilised as nano-additives at a dilute particle loading rate (PLR) of 0%-0.5% by weight. Pure ethanol droplets vaporise at a faster rate than pure dodecane droplets and do not exhibit any secondary atomisation. However, pure dodecane droplets exhibit two modes of secondary breakup; Kelvin-Helmholtz instability induced stripping and catastrophic breakup beyond a certain threshold value of the ini...
An experimental setup using radiative heating has been used to understand the thermo-physical phenom...
An experimental setup using radiative heating has been used to understand the thermo-physical phenom...
We study the thermal effects that lead to instability and break up in acoustically levitated vaporiz...
We report detailed analyses of evaporation and atomisation characteristics of nanofuel droplets in a...
Multiscale combustion dynamics, shape oscillations, secondary atomization, and precipitate formation...
We study thermally induced atomization modes in contact free (acoustically levitated) nanoparticle l...
The complex multiscale physics of nanoparticle laden functional droplets in a reacting environment i...
With the pressing need to meet an ever-increasing energy demand, the combustion systems utilizing fo...
We experimentally investigate the evaporation of water-ethanol binary sessile droplets loaded with a...
Understanding the combustion characteristics of fuel droplets laden with energetic nanoparticles (NP...
Nanofluids are liquids with stable suspension of nanoparticles. Limited studies in the past have sho...
Nanofluid fuel is a novel concept and has drawn great attentions in combustion and propulsion commun...
The complex multiscale physics of nano-particle laden functional droplets in a reacting environment ...
The transport sector plays a crucial aspect in society and economic evolution. However, improper ene...
Evaporation of pure and binary liquid droplets is of interest in thermal sprays and spray drying of ...
An experimental setup using radiative heating has been used to understand the thermo-physical phenom...
An experimental setup using radiative heating has been used to understand the thermo-physical phenom...
We study the thermal effects that lead to instability and break up in acoustically levitated vaporiz...
We report detailed analyses of evaporation and atomisation characteristics of nanofuel droplets in a...
Multiscale combustion dynamics, shape oscillations, secondary atomization, and precipitate formation...
We study thermally induced atomization modes in contact free (acoustically levitated) nanoparticle l...
The complex multiscale physics of nanoparticle laden functional droplets in a reacting environment i...
With the pressing need to meet an ever-increasing energy demand, the combustion systems utilizing fo...
We experimentally investigate the evaporation of water-ethanol binary sessile droplets loaded with a...
Understanding the combustion characteristics of fuel droplets laden with energetic nanoparticles (NP...
Nanofluids are liquids with stable suspension of nanoparticles. Limited studies in the past have sho...
Nanofluid fuel is a novel concept and has drawn great attentions in combustion and propulsion commun...
The complex multiscale physics of nano-particle laden functional droplets in a reacting environment ...
The transport sector plays a crucial aspect in society and economic evolution. However, improper ene...
Evaporation of pure and binary liquid droplets is of interest in thermal sprays and spray drying of ...
An experimental setup using radiative heating has been used to understand the thermo-physical phenom...
An experimental setup using radiative heating has been used to understand the thermo-physical phenom...
We study the thermal effects that lead to instability and break up in acoustically levitated vaporiz...