Marangoni convection in binary drops resting on a plate in quiescent air is studied. Water is used with low molar fractions of 2-butanol or ethanol. The droplets are homogeneously cooled from below with an initial temperature difference of 3.5 K. In the presence of air, the thermocapillary and concentration-gradients induced motions are mutually reinforcing. The latter motions last much longer than the time it takes for interfacial temperature gradients to become negligible. The Marangoni convection time increases with increasing concentration of alcohol if the volume concentration is less than 10 vol.%, levels off at higher concentrations and is higher for 2-butanol than for ethanol. The consequences for dropwise condensation in practical ...
Single droplets immersed in an ambient liquid represent the smallest transfer unit in a liquid/liqui...
In order to understand the evolution of thermal patterns and the effect of the thermal convection in...
The use of volatile fluids have produced interesting thermal patterns from which the internal fluid ...
Marangoni convection in binary drops resting on a plate in quiescent air is studied. Water is used w...
Measurements with a thermograph, spectral range 2,0-5,6 (µm, reveal temperature gradients in liquid ...
The evaporation processes of pure water, pure 1-butanol, and 5% 1-butanol aqueous solution drops on ...
The flow in a layer of volatile fluid driven by a horizontal temperature gradient is a fundamental t...
The Marangoni contraction of sessile drops of a binary mixture of a volatile and a nonvolatile liqui...
Abstract. A combined experimental and numerical analysis has been carried out to study Marangoni eff...
The self-induced Marangoni convection in alcoholic solutions is the subject of the present experimen...
A series of steady-state water condensation experiments were conducted to determine the effects of ...
Regular thermal patterns can be formed spontaneously at the evaporating interface of a sessile dropl...
The evaporation of a binary sessile ethanol-water droplet on an inclined substrate is studied experi...
In order to understand the effect of Marangoni convection on the evaporation rate and the flow patte...
Single droplets immersed in an ambient liquid represent the smallest transfer unit in a liquid/liqui...
In order to understand the evolution of thermal patterns and the effect of the thermal convection in...
The use of volatile fluids have produced interesting thermal patterns from which the internal fluid ...
Marangoni convection in binary drops resting on a plate in quiescent air is studied. Water is used w...
Measurements with a thermograph, spectral range 2,0-5,6 (µm, reveal temperature gradients in liquid ...
The evaporation processes of pure water, pure 1-butanol, and 5% 1-butanol aqueous solution drops on ...
The flow in a layer of volatile fluid driven by a horizontal temperature gradient is a fundamental t...
The Marangoni contraction of sessile drops of a binary mixture of a volatile and a nonvolatile liqui...
Abstract. A combined experimental and numerical analysis has been carried out to study Marangoni eff...
The self-induced Marangoni convection in alcoholic solutions is the subject of the present experimen...
A series of steady-state water condensation experiments were conducted to determine the effects of ...
Regular thermal patterns can be formed spontaneously at the evaporating interface of a sessile dropl...
The evaporation of a binary sessile ethanol-water droplet on an inclined substrate is studied experi...
In order to understand the effect of Marangoni convection on the evaporation rate and the flow patte...
Single droplets immersed in an ambient liquid represent the smallest transfer unit in a liquid/liqui...
In order to understand the evolution of thermal patterns and the effect of the thermal convection in...
The use of volatile fluids have produced interesting thermal patterns from which the internal fluid ...