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Effect of nanoparticles on condensation of humid air in vertical channels

Author:
ایمان زینلی فامیله
,
جواد ابوالفضلی اصفهانی
,
Kambiz Vafai
,
Iman Zeynali
,
Javad Abolfazli Esfahani
Year
: 2017
Abstract: In this paper, the effect of uniform surface injection of nanoparticles on humid air condensation, as a main type of vapor condensation in the presence of non-condensable gas (NCG), is numerically investigated. Various inlet conditions (velocity and relative humidity) of vertical CONAN type classical test section were modeled. Two mass concentrations of different nanoparticles were examined and the behavior of filmwise condensation was studied under different parameters of heat and mass transfer, such as: Reynolds number and mean Nusselt number of the condensed film, and local and mean Sherwood number. Finally, by using response surface methodology, the statistical interpretation (objective function) of the numerical results are provided for other inlet conditions. As shown in the results, an increase in the nanoparticles mass concentration has direct influence on condensate Reynolds number and Sherwood number of the humid air. At higher relative humidities (ω), using nanoparticles has more impact and the maximum improvement of the condensate Reynolds number (at the outlet), mean Nusselt number of the condensed film and mean Sherwood number are 11.4, 4.5 and 6%, respectively. It is observed that, under best conditions (ω = 100%, Uin = 3 m/s), 0.5% of nanoparticles mass concentration improves the total heat flux by more than 10.4%.
URI: https://libsearch.um.ac.ir:443/fum/handle/fum/3357368
Keyword(s): Filmwise condensation,Non-condensable gas,Nano-particles,Humid air,Heat and mass transfer
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    Effect of nanoparticles on condensation of humid air in vertical channels

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contributor authorایمان زینلی فامیلهen
contributor authorجواد ابوالفضلی اصفهانیen
contributor authorKambiz Vafaien
contributor authorIman Zeynalifa
contributor authorJavad Abolfazli Esfahanifa
date accessioned2020-06-06T13:29:55Z
date available2020-06-06T13:29:55Z
date issued2017
identifier urihttps://libsearch.um.ac.ir:443/fum/handle/fum/3357368?locale-attribute=en
description abstractIn this paper, the effect of uniform surface injection of nanoparticles on humid air condensation, as a main type of vapor condensation in the presence of non-condensable gas (NCG), is numerically investigated. Various inlet conditions (velocity and relative humidity) of vertical CONAN type classical test section were modeled. Two mass concentrations of different nanoparticles were examined and the behavior of filmwise condensation was studied under different parameters of heat and mass transfer, such as: Reynolds number and mean Nusselt number of the condensed film, and local and mean Sherwood number. Finally, by using response surface methodology, the statistical interpretation (objective function) of the numerical results are provided for other inlet conditions. As shown in the results, an increase in the nanoparticles mass concentration has direct influence on condensate Reynolds number and Sherwood number of the humid air. At higher relative humidities (ω), using nanoparticles has more impact and the maximum improvement of the condensate Reynolds number (at the outlet), mean Nusselt number of the condensed film and mean Sherwood number are 11.4, 4.5 and 6%, respectively. It is observed that, under best conditions (ω = 100%, Uin = 3 m/s), 0.5% of nanoparticles mass concentration improves the total heat flux by more than 10.4%.en
languageEnglish
titleEffect of nanoparticles on condensation of humid air in vertical channelsen
typeJournal Paper
contenttypeExternal Fulltext
subject keywordsFilmwise condensationen
subject keywordsNon-condensable gasen
subject keywordsNano-particlesen
subject keywordsHumid airen
subject keywordsHeat and mass transferen
journal titleInternational Journal of Thermal Sciencesen
journal titleInternational Journal of Thermal Sciencesfa
pages470-483
journal volume112
journal issue0
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1057003.html
identifier articleid1057003
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