The effect of temperature and gas Reynolds number on evaporation of a sessile liquid drop in mini-channel

Experimental setup has been designed and manufactured to study the evaporation processes of liquid drop under blowing gas in mini-channel. The height of channel can be varied from 3 to 20 mm. Substrates are removable and its surface temperature is kept to constant value. The shadow method is main me...

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Main Authors: Orlik Evgeniy, Bykovskaya Elena, Bai Bo-Feng
Format: Article
Language:English
Published: EDP Sciences 2016-01-01
Series:MATEC Web of Conferences
Online Access:http://dx.doi.org/10.1051/matecconf/20168400028
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author Orlik Evgeniy
Bykovskaya Elena
Bai Bo-Feng
author_facet Orlik Evgeniy
Bykovskaya Elena
Bai Bo-Feng
author_sort Orlik Evgeniy
collection DOAJ
description Experimental setup has been designed and manufactured to study the evaporation processes of liquid drop under blowing gas in mini-channel. The height of channel can be varied from 3 to 20 mm. Substrates are removable and its surface temperature is kept to constant value. The shadow method is main measurement technique. Series of experiments with 100 μl water drop on polished stainless still substrate are carried out in channel with 9 mm height. Dependences of evaporating rate for different range of temperatures and gas Reynolds numbers are obtained.
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spelling doaj.art-eff6c35b96f4452ea4b7650fc56428972022-12-21T17:26:20ZengEDP SciencesMATEC Web of Conferences2261-236X2016-01-01840002810.1051/matecconf/20168400028matecconf_ipht2016_00028The effect of temperature and gas Reynolds number on evaporation of a sessile liquid drop in mini-channelOrlik EvgeniyBykovskaya Elena0Bai Bo-Feng1Institute of ThermophysicsState key lab of Multiphase Flow in Power Engineering, Xi’an Jiaotong UniversityExperimental setup has been designed and manufactured to study the evaporation processes of liquid drop under blowing gas in mini-channel. The height of channel can be varied from 3 to 20 mm. Substrates are removable and its surface temperature is kept to constant value. The shadow method is main measurement technique. Series of experiments with 100 μl water drop on polished stainless still substrate are carried out in channel with 9 mm height. Dependences of evaporating rate for different range of temperatures and gas Reynolds numbers are obtained.http://dx.doi.org/10.1051/matecconf/20168400028
spellingShingle Orlik Evgeniy
Bykovskaya Elena
Bai Bo-Feng
The effect of temperature and gas Reynolds number on evaporation of a sessile liquid drop in mini-channel
MATEC Web of Conferences
title The effect of temperature and gas Reynolds number on evaporation of a sessile liquid drop in mini-channel
title_full The effect of temperature and gas Reynolds number on evaporation of a sessile liquid drop in mini-channel
title_fullStr The effect of temperature and gas Reynolds number on evaporation of a sessile liquid drop in mini-channel
title_full_unstemmed The effect of temperature and gas Reynolds number on evaporation of a sessile liquid drop in mini-channel
title_short The effect of temperature and gas Reynolds number on evaporation of a sessile liquid drop in mini-channel
title_sort effect of temperature and gas reynolds number on evaporation of a sessile liquid drop in mini channel
url http://dx.doi.org/10.1051/matecconf/20168400028
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