Numerical study of the low-Reynolds flows in the vertical heated caverns

The object of research is the critical geometry of a three-dimensional air flow in a cavern between two vertical heated plates. In this rate the convection's contribution to heat transfer will be limited due to thermal conductivity at a fixture temperature drop. A three-dimensional RANS approac...

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Main Authors: Petrichenko Mikhail, Sergeev Vitaly, Nemova Darya, Kotov Evgeny, Tarasova Darya
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:EPJ Web of Conferences
Online Access:https://www.epj-conferences.org/articles/epjconf/pdf/2019/18/epjconf_efm18_02065.pdf
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author Petrichenko Mikhail
Sergeev Vitaly
Nemova Darya
Kotov Evgeny
Tarasova Darya
author_facet Petrichenko Mikhail
Sergeev Vitaly
Nemova Darya
Kotov Evgeny
Tarasova Darya
author_sort Petrichenko Mikhail
collection DOAJ
description The object of research is the critical geometry of a three-dimensional air flow in a cavern between two vertical heated plates. In this rate the convection's contribution to heat transfer will be limited due to thermal conductivity at a fixture temperature drop. A three-dimensional RANS approach closed by the k-w SST turbulence model in conjunction with the energy equation. The model validated and verified by comparison with the experimental results. The results of the work applied in developing of ventilated façades.
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spelling doaj.art-eadd3118be3d43ad890ef3ff21a53d722022-12-21T21:24:56ZengEDP SciencesEPJ Web of Conferences2100-014X2019-01-012130206510.1051/epjconf/201921302065epjconf_efm18_02065Numerical study of the low-Reynolds flows in the vertical heated cavernsPetrichenko Mikhail0Sergeev Vitaly1Nemova Darya2Kotov Evgeny3Tarasova Darya4Peter the Great Saint-Petersburg Polytechnic UniversityPeter the Great Saint-Petersburg Polytechnic UniversityPeter the Great Saint-Petersburg Polytechnic UniversityPeter the Great Saint-Petersburg Polytechnic UniversityPeter the Great Saint-Petersburg Polytechnic UniversityThe object of research is the critical geometry of a three-dimensional air flow in a cavern between two vertical heated plates. In this rate the convection's contribution to heat transfer will be limited due to thermal conductivity at a fixture temperature drop. A three-dimensional RANS approach closed by the k-w SST turbulence model in conjunction with the energy equation. The model validated and verified by comparison with the experimental results. The results of the work applied in developing of ventilated façades.https://www.epj-conferences.org/articles/epjconf/pdf/2019/18/epjconf_efm18_02065.pdf
spellingShingle Petrichenko Mikhail
Sergeev Vitaly
Nemova Darya
Kotov Evgeny
Tarasova Darya
Numerical study of the low-Reynolds flows in the vertical heated caverns
EPJ Web of Conferences
title Numerical study of the low-Reynolds flows in the vertical heated caverns
title_full Numerical study of the low-Reynolds flows in the vertical heated caverns
title_fullStr Numerical study of the low-Reynolds flows in the vertical heated caverns
title_full_unstemmed Numerical study of the low-Reynolds flows in the vertical heated caverns
title_short Numerical study of the low-Reynolds flows in the vertical heated caverns
title_sort numerical study of the low reynolds flows in the vertical heated caverns
url https://www.epj-conferences.org/articles/epjconf/pdf/2019/18/epjconf_efm18_02065.pdf
work_keys_str_mv AT petrichenkomikhail numericalstudyofthelowreynoldsflowsintheverticalheatedcaverns
AT sergeevvitaly numericalstudyofthelowreynoldsflowsintheverticalheatedcaverns
AT nemovadarya numericalstudyofthelowreynoldsflowsintheverticalheatedcaverns
AT kotovevgeny numericalstudyofthelowreynoldsflowsintheverticalheatedcaverns
AT tarasovadarya numericalstudyofthelowreynoldsflowsintheverticalheatedcaverns