Boiling of liquid in a mini channel on smooth, rough and porous surfaces

A series of experiments were conducted to study the effect of the heater coating on the frequency of formation of steam bubbles and on heat exchange during boiling in the channel. Three different surfaces were used: 1) smooth, 2) rough and 3) porous. It was found that at relatively low heat fluxes,...

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Main Authors: Semenov Andrey, Pukhovoy Maxim, Zaitsev Dmitry
Format: Article
Language:English
Published: EDP Sciences 2024-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/108/e3sconf_sts2024_01049.pdf
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author Semenov Andrey
Pukhovoy Maxim
Zaitsev Dmitry
author_facet Semenov Andrey
Pukhovoy Maxim
Zaitsev Dmitry
author_sort Semenov Andrey
collection DOAJ
description A series of experiments were conducted to study the effect of the heater coating on the frequency of formation of steam bubbles and on heat exchange during boiling in the channel. Three different surfaces were used: 1) smooth, 2) rough and 3) porous. It was found that at relatively low heat fluxes, the specific frequency of bubble formation on a rough surface is higher than on a smooth one. However, with an increase in the heat flux, the difference in the frequency of bubble formation on rough and smooth surfaces practically disappears. At the same time, bubble formation on a porous surface occurs with almost 3 times the frequency, compared to both smooth and rough in the entire range of heat fluxes (up to 500 W/cm2). The obtained results can explain the recorded fact of a significant increase in the heat transfer coefficient and the critical heat flux on a porous surface.
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institution OA Journals
issn 2267-1242
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publishDate 2024-01-01
publisher EDP Sciences
record_format Article
series E3S Web of Conferences
spelling doaj-art-74dde266d9e24e2cb4663309c4e11c522025-08-20T02:10:42ZengEDP SciencesE3S Web of Conferences2267-12422024-01-015780104910.1051/e3sconf/202457801049e3sconf_sts2024_01049Boiling of liquid in a mini channel on smooth, rough and porous surfacesSemenov Andrey0Pukhovoy Maxim1Zaitsev Dmitry2Kutateladze Institute of Themophysics, SB RASKutateladze Institute of Themophysics, SB RASKutateladze Institute of Themophysics, SB RASA series of experiments were conducted to study the effect of the heater coating on the frequency of formation of steam bubbles and on heat exchange during boiling in the channel. Three different surfaces were used: 1) smooth, 2) rough and 3) porous. It was found that at relatively low heat fluxes, the specific frequency of bubble formation on a rough surface is higher than on a smooth one. However, with an increase in the heat flux, the difference in the frequency of bubble formation on rough and smooth surfaces practically disappears. At the same time, bubble formation on a porous surface occurs with almost 3 times the frequency, compared to both smooth and rough in the entire range of heat fluxes (up to 500 W/cm2). The obtained results can explain the recorded fact of a significant increase in the heat transfer coefficient and the critical heat flux on a porous surface.https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/108/e3sconf_sts2024_01049.pdf
spellingShingle Semenov Andrey
Pukhovoy Maxim
Zaitsev Dmitry
Boiling of liquid in a mini channel on smooth, rough and porous surfaces
E3S Web of Conferences
title Boiling of liquid in a mini channel on smooth, rough and porous surfaces
title_full Boiling of liquid in a mini channel on smooth, rough and porous surfaces
title_fullStr Boiling of liquid in a mini channel on smooth, rough and porous surfaces
title_full_unstemmed Boiling of liquid in a mini channel on smooth, rough and porous surfaces
title_short Boiling of liquid in a mini channel on smooth, rough and porous surfaces
title_sort boiling of liquid in a mini channel on smooth rough and porous surfaces
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/108/e3sconf_sts2024_01049.pdf
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AT pukhovoymaxim boilingofliquidinaminichannelonsmoothroughandporoussurfaces
AT zaitsevdmitry boilingofliquidinaminichannelonsmoothroughandporoussurfaces