The Effect of the Substrate Temperature and the Height of the Mini-Channel on the Evaporation of Liquid Droplet Blown by the Gas Flow

The experimental setup has been designed and fabricated to study the evaporation of liquid droplets, blown by the gas flow in a mini-channel with a height of 6 and 9 mm. Substrates were removable, and the surface temperature of the substrate was maintained at a constant level. The shadow method was...

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Main Authors: Isachenko Ekaterina, Orlik Evgeniy, Kabov Oleg
Format: Article
Language:English
Published: EDP Sciences 2016-01-01
Series:MATEC Web of Conferences
Online Access:http://dx.doi.org/10.1051/matecconf/20167201038
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author Isachenko Ekaterina
Orlik Evgeniy
Kabov Oleg
author_facet Isachenko Ekaterina
Orlik Evgeniy
Kabov Oleg
author_sort Isachenko Ekaterina
collection DOAJ
description The experimental setup has been designed and fabricated to study the evaporation of liquid droplets, blown by the gas flow in a mini-channel with a height of 6 and 9 mm. Substrates were removable, and the surface temperature of the substrate was maintained at a constant level. The shadow method was the main method of measurement. A series of experiments with a water drop of 100 μl volume settled on a polished stainless substrate were carried out. As a result the dependences for the droplet evaporation rate were obtained in the range of temperatures 25–70 °C and Reynolds numbers of gas 0–2000.
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spelling doaj.art-4e683deaf3574036a8f343ea268fe2692022-12-21T19:40:13ZengEDP SciencesMATEC Web of Conferences2261-236X2016-01-01720103810.1051/matecconf/20167201038matecconf_hmttsc2016_01038The Effect of the Substrate Temperature and the Height of the Mini-Channel on the Evaporation of Liquid Droplet Blown by the Gas FlowIsachenko EkaterinaOrlik EvgeniyKabov OlegThe experimental setup has been designed and fabricated to study the evaporation of liquid droplets, blown by the gas flow in a mini-channel with a height of 6 and 9 mm. Substrates were removable, and the surface temperature of the substrate was maintained at a constant level. The shadow method was the main method of measurement. A series of experiments with a water drop of 100 μl volume settled on a polished stainless substrate were carried out. As a result the dependences for the droplet evaporation rate were obtained in the range of temperatures 25–70 °C and Reynolds numbers of gas 0–2000.http://dx.doi.org/10.1051/matecconf/20167201038
spellingShingle Isachenko Ekaterina
Orlik Evgeniy
Kabov Oleg
The Effect of the Substrate Temperature and the Height of the Mini-Channel on the Evaporation of Liquid Droplet Blown by the Gas Flow
MATEC Web of Conferences
title The Effect of the Substrate Temperature and the Height of the Mini-Channel on the Evaporation of Liquid Droplet Blown by the Gas Flow
title_full The Effect of the Substrate Temperature and the Height of the Mini-Channel on the Evaporation of Liquid Droplet Blown by the Gas Flow
title_fullStr The Effect of the Substrate Temperature and the Height of the Mini-Channel on the Evaporation of Liquid Droplet Blown by the Gas Flow
title_full_unstemmed The Effect of the Substrate Temperature and the Height of the Mini-Channel on the Evaporation of Liquid Droplet Blown by the Gas Flow
title_short The Effect of the Substrate Temperature and the Height of the Mini-Channel on the Evaporation of Liquid Droplet Blown by the Gas Flow
title_sort effect of the substrate temperature and the height of the mini channel on the evaporation of liquid droplet blown by the gas flow
url http://dx.doi.org/10.1051/matecconf/20167201038
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