Experimental and Numerical Investigation of Heat and Mass Transfer Processes for Determining the Optimal Design of an Accumulator with Phase Transformations
Applying the methods of mathematical and experimental modeling, the processes of heat and mass transfer in heat accumulator with phase transformations, where heat sources are made in the form of tube bundles staggered have been studied. The analysis of these processes is carried out and the main pha...
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Shahid Chamran University of Ahvaz
2021-04-01
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doaj-0271e40e18124746906565605aa84ad02021-02-04T16:51:02ZengShahid Chamran University of AhvazJournal of Applied and Computational Mechanics2383-45362383-45362021-04-017261162010.22055/jacm.2020.34893.252416118Experimental and Numerical Investigation of Heat and Mass Transfer Processes for Determining the Optimal Design of an Accumulator with Phase TransformationsIevgen Antypov0Valery Gorobets1Viktor Trokhaniak2Department of Heat and Power Engineering, National University of Life and Environmental Sciences of Ukraine, Heroyiv Oborony st., 15, Kyiv, 03041, UkraineDepartment of Heat and Power Engineering, National University of Life and Environmental Sciences of Ukraine, Heroyiv Oborony st., 15, Kyiv, 03041, UkraineDepartment of Heat and Power Engineering, National University of Life and Environmental Sciences of Ukraine, Heroyiv Oborony st., 15, Kyiv, 03041, UkraineApplying the methods of mathematical and experimental modeling, the processes of heat and mass transfer in heat accumulator with phase transformations, where heat sources are made in the form of tube bundles staggered have been studied. The analysis of these processes is carried out and the main phases of heat accumulation and extraction at heat accumulator “charging” and “discharging” have been determined. The geometry of the location of heat sources (runoffs) is found, at which the rate of heat accumulation (extraction) from the unit of PCM is the maximum. As a result of the conducted investigations a new improved design of heat accumulator, which can be used when developing heat accumulators of a similar type has been suggested.https://jacm.scu.ac.ir/article_16118_bf55c5515cbafc2b372801c9e248c2a1.pdfphase transformationslatent heat accumulatornumerical modelingconvective heat fluxoptimal distance between heat sources |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ievgen Antypov Valery Gorobets Viktor Trokhaniak |
spellingShingle |
Ievgen Antypov Valery Gorobets Viktor Trokhaniak Experimental and Numerical Investigation of Heat and Mass Transfer Processes for Determining the Optimal Design of an Accumulator with Phase Transformations Journal of Applied and Computational Mechanics phase transformations latent heat accumulator numerical modeling convective heat flux optimal distance between heat sources |
author_facet |
Ievgen Antypov Valery Gorobets Viktor Trokhaniak |
author_sort |
Ievgen Antypov |
title |
Experimental and Numerical Investigation of Heat and Mass Transfer Processes for Determining the Optimal Design of an Accumulator with Phase Transformations |
title_short |
Experimental and Numerical Investigation of Heat and Mass Transfer Processes for Determining the Optimal Design of an Accumulator with Phase Transformations |
title_full |
Experimental and Numerical Investigation of Heat and Mass Transfer Processes for Determining the Optimal Design of an Accumulator with Phase Transformations |
title_fullStr |
Experimental and Numerical Investigation of Heat and Mass Transfer Processes for Determining the Optimal Design of an Accumulator with Phase Transformations |
title_full_unstemmed |
Experimental and Numerical Investigation of Heat and Mass Transfer Processes for Determining the Optimal Design of an Accumulator with Phase Transformations |
title_sort |
experimental and numerical investigation of heat and mass transfer processes for determining the optimal design of an accumulator with phase transformations |
publisher |
Shahid Chamran University of Ahvaz |
series |
Journal of Applied and Computational Mechanics |
issn |
2383-4536 2383-4536 |
publishDate |
2021-04-01 |
description |
Applying the methods of mathematical and experimental modeling, the processes of heat and mass transfer in heat accumulator with phase transformations, where heat sources are made in the form of tube bundles staggered have been studied. The analysis of these processes is carried out and the main phases of heat accumulation and extraction at heat accumulator “charging” and “discharging” have been determined. The geometry of the location of heat sources (runoffs) is found, at which the rate of heat accumulation (extraction) from the unit of PCM is the maximum. As a result of the conducted investigations a new improved design of heat accumulator, which can be used when developing heat accumulators of a similar type has been suggested. |
topic |
phase transformations latent heat accumulator numerical modeling convective heat flux optimal distance between heat sources |
url |
https://jacm.scu.ac.ir/article_16118_bf55c5515cbafc2b372801c9e248c2a1.pdf |
work_keys_str_mv |
AT ievgenantypov experimentalandnumericalinvestigationofheatandmasstransferprocessesfordeterminingtheoptimaldesignofanaccumulatorwithphasetransformations AT valerygorobets experimentalandnumericalinvestigationofheatandmasstransferprocessesfordeterminingtheoptimaldesignofanaccumulatorwithphasetransformations AT viktortrokhaniak experimentalandnumericalinvestigationofheatandmasstransferprocessesfordeterminingtheoptimaldesignofanaccumulatorwithphasetransformations |
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1724285081297616896 |