Modelling of non-stationary pressure fluctuations during boiling in a minichannel

Boiling in a minichannel occurring at a low mass flow rate is accompanied by non-stationary twophase flow. The analysis of pressure fluctuations during non-stationary boiling in minichannel shows that quasi-periodic changes in flow patterns can be observed in such fluctuations. We can define in such...

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Main Authors: Mosdorf Romuald, Grzybowski Hubert, Gruszczyńska Iwona
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/54/e3sconf_icchmt2019_04007.pdf
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spelling doaj-67b31aa452bb453fb63d2d6ab70cf0bc2021-02-02T06:45:30ZengEDP SciencesE3S Web of Conferences2267-12422019-01-011280400710.1051/e3sconf/201912804007e3sconf_icchmt2019_04007Modelling of non-stationary pressure fluctuations during boiling in a minichannelMosdorf RomualdGrzybowski HubertGruszczyńska IwonaBoiling in a minichannel occurring at a low mass flow rate is accompanied by non-stationary twophase flow. The analysis of pressure fluctuations during non-stationary boiling in minichannel shows that quasi-periodic changes in flow patterns can be observed in such fluctuations. We can define in such a way the sequences, which are called “oscillating boiling patterns”. In the present paper the model, which allows us to simulate the appearance of “oscillating boiling patterns” has been presented. In the proposed model the mass flow rate changes (because of evaporation and condensation) are modelled by compressible volumes representing various sizes bubbles. In the paper the good quality agreement between experimental data and simulation results has been achieved. Experimental data was collected during the boiling in open minichannels system with inner diameter of 1 mm.https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/54/e3sconf_icchmt2019_04007.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Mosdorf Romuald
Grzybowski Hubert
Gruszczyńska Iwona
spellingShingle Mosdorf Romuald
Grzybowski Hubert
Gruszczyńska Iwona
Modelling of non-stationary pressure fluctuations during boiling in a minichannel
E3S Web of Conferences
author_facet Mosdorf Romuald
Grzybowski Hubert
Gruszczyńska Iwona
author_sort Mosdorf Romuald
title Modelling of non-stationary pressure fluctuations during boiling in a minichannel
title_short Modelling of non-stationary pressure fluctuations during boiling in a minichannel
title_full Modelling of non-stationary pressure fluctuations during boiling in a minichannel
title_fullStr Modelling of non-stationary pressure fluctuations during boiling in a minichannel
title_full_unstemmed Modelling of non-stationary pressure fluctuations during boiling in a minichannel
title_sort modelling of non-stationary pressure fluctuations during boiling in a minichannel
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2019-01-01
description Boiling in a minichannel occurring at a low mass flow rate is accompanied by non-stationary twophase flow. The analysis of pressure fluctuations during non-stationary boiling in minichannel shows that quasi-periodic changes in flow patterns can be observed in such fluctuations. We can define in such a way the sequences, which are called “oscillating boiling patterns”. In the present paper the model, which allows us to simulate the appearance of “oscillating boiling patterns” has been presented. In the proposed model the mass flow rate changes (because of evaporation and condensation) are modelled by compressible volumes representing various sizes bubbles. In the paper the good quality agreement between experimental data and simulation results has been achieved. Experimental data was collected during the boiling in open minichannels system with inner diameter of 1 mm.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/54/e3sconf_icchmt2019_04007.pdf
work_keys_str_mv AT mosdorfromuald modellingofnonstationarypressurefluctuationsduringboilinginaminichannel
AT grzybowskihubert modellingofnonstationarypressurefluctuationsduringboilinginaminichannel
AT gruszczynskaiwona modellingofnonstationarypressurefluctuationsduringboilinginaminichannel
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