Evaporation is a fundamental and core phenomenon in a broad range of disciplines. Despite its importance, the current theories on evaporation suffer from fitting coefficients with reported values varying in a few orders of magnitude. Lack of a sound model impedes simulation and prediction of characteristics of many systems in these disciplines. Here, we studied evaporation at a planar liquid-vapor interface. Our experimental set-up provides the ability to probe thermodynamic properties in liquid-vapor interface. Through analysis of these properties in a wide range of evaporation mass fluxes, we cast a predictive model of evaporation based on non-equilibrium thermodynamics with no fitting parameters. In this model, only the interfacial tempe...
The statistical rate theory (SRT) is applied to predict the average evaporation flux of liquid dropl...
A theoretical description of the evaporation of sessile drops is proposed. The linear dependency of ...
We numerically and experimentally investigate evaporation of a sessile droplet on a heated substrate...
Evaporation is a fundamental and core phenomenon in a broad range of disciplines including power gen...
grantor: University of TorontoThe results of recent experiments indicate that a temperatur...
grantor: University of TorontoThe results of recent experiments indicate that a temperatur...
The diffusion-driven evaporation of sessile droplets from planar surfaces is influenced by cooling a...
The diffusion-driven evaporation of sessile droplets from planar surfaces is influenced by cooling a...
grantor: University of TorontoAn experimental apparatus has been constructed that allows t...
Prediction and manipulation of the evaporation of small droplets is a fundamental problem with impor...
<p>In this article, the Simultaneous Mass and Energy Evaporation (SM2E) model is presented. The SM2E...
The ζ-adsorption isotherm was used along with Gibbsian thermodynamics to determine an expression for...
The statistical rate theory (SRT) is applied to predict the average evaporation flux of liquid dropl...
A theoretical description of the evaporation of sessile drops is proposed. The linear dependency of ...
A theoretical description of the evaporation of sessile drops is proposed. The linear dependency of ...
The statistical rate theory (SRT) is applied to predict the average evaporation flux of liquid dropl...
A theoretical description of the evaporation of sessile drops is proposed. The linear dependency of ...
We numerically and experimentally investigate evaporation of a sessile droplet on a heated substrate...
Evaporation is a fundamental and core phenomenon in a broad range of disciplines including power gen...
grantor: University of TorontoThe results of recent experiments indicate that a temperatur...
grantor: University of TorontoThe results of recent experiments indicate that a temperatur...
The diffusion-driven evaporation of sessile droplets from planar surfaces is influenced by cooling a...
The diffusion-driven evaporation of sessile droplets from planar surfaces is influenced by cooling a...
grantor: University of TorontoAn experimental apparatus has been constructed that allows t...
Prediction and manipulation of the evaporation of small droplets is a fundamental problem with impor...
<p>In this article, the Simultaneous Mass and Energy Evaporation (SM2E) model is presented. The SM2E...
The ζ-adsorption isotherm was used along with Gibbsian thermodynamics to determine an expression for...
The statistical rate theory (SRT) is applied to predict the average evaporation flux of liquid dropl...
A theoretical description of the evaporation of sessile drops is proposed. The linear dependency of ...
A theoretical description of the evaporation of sessile drops is proposed. The linear dependency of ...
The statistical rate theory (SRT) is applied to predict the average evaporation flux of liquid dropl...
A theoretical description of the evaporation of sessile drops is proposed. The linear dependency of ...
We numerically and experimentally investigate evaporation of a sessile droplet on a heated substrate...