Laponite, Fe(2)O(3) and Ag nanoparticles were added to deionized water to study their effect of evaporation rates. The results show that these nanofluid droplets evaporate at different rates (as indicated by the evaporation rate constant K in the well known D(2)-law) from the base fluid. Different particles lead to different values of K. As the particle concentration increases due to evaporation. K values of various Ag and Fe(2)O(3) nanofluids go through a transition from one value to another, further demonstrating the effect of increasing nanoparticle concentration. The implication for the heat of vaporization (h(fg)) is discussed. (C) 2010 Elsevier Ltd. All rights reserved
The effect of nanoparticles on the evaporation of a sessile droplet into air is still controversial....
We experimentally investigate the evaporation characteristics of a sessile ethanol droplet containin...
The objective of this experiment is to study the effects of sodium chloride (NaCl) and the Aluminum ...
Laponite, Fe2O3 and Ag nanoparticles were added to deionized water to study their effect of evaporat...
Measurements of nanofluid surface tension were made using the pendant droplet method. Three differen...
Measurements of nanofluid surface tension were made using the pendant droplet method. Three differen...
In this experimental investigation the evaporative behaviour of liquid droplets of both pure fluids ...
The effect of nanoparticles on the evaporation of a sessile droplet into air is still controversial....
Nanofluids are suspensions of nanoparticles in fluids that exhibit significant enhancement of their ...
A model is presented for predicting the evaporation behavior of liquid droplets containing nano-size...
Nanofluids are metallic or nonmetallic, nanometer-sized particles dispersed in liquid. They can be u...
Droplet evaporation is fascinating, ubiquitous, and relevant for a wide spectrum of applications, su...
Nanofluid is a liquid that contains suspensions of nanoparticles and has been widely established and...
Nanofluids can be simply expressed as fluids that contain nanoparticle suspensions. The addition of ...
This study experimentally investigates non-uniform particle distributions and evaporation characteri...
The effect of nanoparticles on the evaporation of a sessile droplet into air is still controversial....
We experimentally investigate the evaporation characteristics of a sessile ethanol droplet containin...
The objective of this experiment is to study the effects of sodium chloride (NaCl) and the Aluminum ...
Laponite, Fe2O3 and Ag nanoparticles were added to deionized water to study their effect of evaporat...
Measurements of nanofluid surface tension were made using the pendant droplet method. Three differen...
Measurements of nanofluid surface tension were made using the pendant droplet method. Three differen...
In this experimental investigation the evaporative behaviour of liquid droplets of both pure fluids ...
The effect of nanoparticles on the evaporation of a sessile droplet into air is still controversial....
Nanofluids are suspensions of nanoparticles in fluids that exhibit significant enhancement of their ...
A model is presented for predicting the evaporation behavior of liquid droplets containing nano-size...
Nanofluids are metallic or nonmetallic, nanometer-sized particles dispersed in liquid. They can be u...
Droplet evaporation is fascinating, ubiquitous, and relevant for a wide spectrum of applications, su...
Nanofluid is a liquid that contains suspensions of nanoparticles and has been widely established and...
Nanofluids can be simply expressed as fluids that contain nanoparticle suspensions. The addition of ...
This study experimentally investigates non-uniform particle distributions and evaporation characteri...
The effect of nanoparticles on the evaporation of a sessile droplet into air is still controversial....
We experimentally investigate the evaporation characteristics of a sessile ethanol droplet containin...
The objective of this experiment is to study the effects of sodium chloride (NaCl) and the Aluminum ...