We report thermally induced instability leading to catastrophic breakup in acoustically levitated vaporizing fuel droplets. Change in surface tension and viscosity with increase in droplet temperature causes wide fluctuations in droplet aspect ratio. If the viscous damping of aspect ratio oscillation is not strong enough, the droplet goes through unbounded stretching. If the droplet exceeds a critical Weber number locally, a bag type and capillary wave induced atomization can occur, which leads to catastrophic breakup. A stability criterion has been established based on the inhomogeneity of Bernoulli (acoustic) pressure and surface tension of the droplet in terms of a local Weber number and Ohnesorge number. This instability is thermally in...
A droplet residing on a vibrating surface and in the pressure antinode of an asymmetric standing wav...
Evaporation of pure and binary liquid droplets is of interest in thermal sprays and spray drying of ...
International audienceWhile the involved physical phenomena are nowadays properly understood, sessil...
We report thermally induced instability leading to catastrophic breakup in acoustically levitated va...
We report thermally induced instability leading to catastrophic breakup in acoustically levitated va...
We report two kinds of instabilities in the form of secondary atomization and catastrophic breakup i...
We study the thermal effects that lead to instability and break up in acoustically levitated vaporiz...
Experiments involving heating of liquid droplets which are acoustically levitated, reveal specific m...
Experiments involving heating of liquid droplets which are acoustically levitated, reveal specific m...
We study thermally induced atomization modes in contact free (acoustically levitated) nanoparticle l...
Abstract: We delineate and examine the distinct breakup modes of evaporating water-in-oil emulsion d...
Experimental analyses of surface oscillations are reported in acoustically levitated, radiatively he...
Controlled breakup of droplets using heat or acoustics is pivotal in applications such as pharmaceut...
International audienceA new mechanism of thermo-acoustic destabilization of combustors powered by bu...
A droplet breakup model is developed for a single droplet introduced into transcritical and strong c...
A droplet residing on a vibrating surface and in the pressure antinode of an asymmetric standing wav...
Evaporation of pure and binary liquid droplets is of interest in thermal sprays and spray drying of ...
International audienceWhile the involved physical phenomena are nowadays properly understood, sessil...
We report thermally induced instability leading to catastrophic breakup in acoustically levitated va...
We report thermally induced instability leading to catastrophic breakup in acoustically levitated va...
We report two kinds of instabilities in the form of secondary atomization and catastrophic breakup i...
We study the thermal effects that lead to instability and break up in acoustically levitated vaporiz...
Experiments involving heating of liquid droplets which are acoustically levitated, reveal specific m...
Experiments involving heating of liquid droplets which are acoustically levitated, reveal specific m...
We study thermally induced atomization modes in contact free (acoustically levitated) nanoparticle l...
Abstract: We delineate and examine the distinct breakup modes of evaporating water-in-oil emulsion d...
Experimental analyses of surface oscillations are reported in acoustically levitated, radiatively he...
Controlled breakup of droplets using heat or acoustics is pivotal in applications such as pharmaceut...
International audienceA new mechanism of thermo-acoustic destabilization of combustors powered by bu...
A droplet breakup model is developed for a single droplet introduced into transcritical and strong c...
A droplet residing on a vibrating surface and in the pressure antinode of an asymmetric standing wav...
Evaporation of pure and binary liquid droplets is of interest in thermal sprays and spray drying of ...
International audienceWhile the involved physical phenomena are nowadays properly understood, sessil...