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Numerical analysis of the energy-storage performance of a PCM-based triplex-tube containment system equipped with arc-shaped fins

This study numerically intends to evaluate the effects of arc-shaped fins on the melting capability of a triplex-tube confinement system filled with phase-change materials (PCMs). In contrast to situations with no fins, where PCM exhibits relatively poor heat response, in this study, the thermal per...

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Autores principales: Abed, Azher M., Mouziraji, Hosseinali Ramezani, Bakhshi, Jafar, Dulaimi, Anmar, Mohammed, Hayder I., Ibrahem, Raed Khalid, Ben Khedher, Nidhal, Yaïci, Wahiba, Mahdi, Jasim M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9792866/
https://www.ncbi.nlm.nih.gov/pubmed/36583152
http://dx.doi.org/10.3389/fchem.2022.1057196
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author Abed, Azher M.
Mouziraji, Hosseinali Ramezani
Bakhshi, Jafar
Dulaimi, Anmar
Mohammed, Hayder I.
Ibrahem, Raed Khalid
Ben Khedher, Nidhal
Yaïci, Wahiba
Mahdi, Jasim M.
author_facet Abed, Azher M.
Mouziraji, Hosseinali Ramezani
Bakhshi, Jafar
Dulaimi, Anmar
Mohammed, Hayder I.
Ibrahem, Raed Khalid
Ben Khedher, Nidhal
Yaïci, Wahiba
Mahdi, Jasim M.
author_sort Abed, Azher M.
collection PubMed
description This study numerically intends to evaluate the effects of arc-shaped fins on the melting capability of a triplex-tube confinement system filled with phase-change materials (PCMs). In contrast to situations with no fins, where PCM exhibits relatively poor heat response, in this study, the thermal performance is modified using novel arc-shaped fins with various circular angles and orientations compared with traditional rectangular fins. Several inline and staggered layouts are also assessed to maximize the fin’s efficacy. The effect of the nearby natural convection is further investigated by adding a fin to the bottom of the heat-storage domain. Additionally, the Reynolds number and temperature of the heat-transfer fluid (HTF) are evaluated. The outcomes showed that the arc-shaped fins could greatly enhance the PCMs’ melting rate and the associated heat-storage properties. The melting rate is 17% and 93.1% greater for the case fitted with an inline distribution of the fins with a circular angle of 90° and an upward direction, respectively, than the cases with uniform rectangular fins and no fins, which corresponded to the shorter melting time of 14.5% and 50.4%. For the case with arc-shaped fins with a 90° circular angle, the melting rate increases by 9% using a staggered distribution. Compared to the staggered fin distribution, adding an extra fin to the bottom of the domain indicates adverse effects. The charging time reduces by 5.8% and 9.2% when the Reynolds number (Re) rises from 500 to 1000 and 1500, respectively, while the heat-storage rate increases by 6.3% and 10.3%. When the fluid inlet temperature is 55°C or 50°C, compared with 45°C, the overall charging time increases by 98% and 47%, respectively.
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spelling pubmed-97928662022-12-28 Numerical analysis of the energy-storage performance of a PCM-based triplex-tube containment system equipped with arc-shaped fins Abed, Azher M. Mouziraji, Hosseinali Ramezani Bakhshi, Jafar Dulaimi, Anmar Mohammed, Hayder I. Ibrahem, Raed Khalid Ben Khedher, Nidhal Yaïci, Wahiba Mahdi, Jasim M. Front Chem Chemistry This study numerically intends to evaluate the effects of arc-shaped fins on the melting capability of a triplex-tube confinement system filled with phase-change materials (PCMs). In contrast to situations with no fins, where PCM exhibits relatively poor heat response, in this study, the thermal performance is modified using novel arc-shaped fins with various circular angles and orientations compared with traditional rectangular fins. Several inline and staggered layouts are also assessed to maximize the fin’s efficacy. The effect of the nearby natural convection is further investigated by adding a fin to the bottom of the heat-storage domain. Additionally, the Reynolds number and temperature of the heat-transfer fluid (HTF) are evaluated. The outcomes showed that the arc-shaped fins could greatly enhance the PCMs’ melting rate and the associated heat-storage properties. The melting rate is 17% and 93.1% greater for the case fitted with an inline distribution of the fins with a circular angle of 90° and an upward direction, respectively, than the cases with uniform rectangular fins and no fins, which corresponded to the shorter melting time of 14.5% and 50.4%. For the case with arc-shaped fins with a 90° circular angle, the melting rate increases by 9% using a staggered distribution. Compared to the staggered fin distribution, adding an extra fin to the bottom of the domain indicates adverse effects. The charging time reduces by 5.8% and 9.2% when the Reynolds number (Re) rises from 500 to 1000 and 1500, respectively, while the heat-storage rate increases by 6.3% and 10.3%. When the fluid inlet temperature is 55°C or 50°C, compared with 45°C, the overall charging time increases by 98% and 47%, respectively. Frontiers Media S.A. 2022-12-13 /pmc/articles/PMC9792866/ /pubmed/36583152 http://dx.doi.org/10.3389/fchem.2022.1057196 Text en Copyright © 2022 Abed, Mouziraji, Bakhshi, Dulaimi, Mohammed, Ibrahem, Ben Khedher, Yaïci and Mahdi. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Chemistry
Abed, Azher M.
Mouziraji, Hosseinali Ramezani
Bakhshi, Jafar
Dulaimi, Anmar
Mohammed, Hayder I.
Ibrahem, Raed Khalid
Ben Khedher, Nidhal
Yaïci, Wahiba
Mahdi, Jasim M.
Numerical analysis of the energy-storage performance of a PCM-based triplex-tube containment system equipped with arc-shaped fins
title Numerical analysis of the energy-storage performance of a PCM-based triplex-tube containment system equipped with arc-shaped fins
title_full Numerical analysis of the energy-storage performance of a PCM-based triplex-tube containment system equipped with arc-shaped fins
title_fullStr Numerical analysis of the energy-storage performance of a PCM-based triplex-tube containment system equipped with arc-shaped fins
title_full_unstemmed Numerical analysis of the energy-storage performance of a PCM-based triplex-tube containment system equipped with arc-shaped fins
title_short Numerical analysis of the energy-storage performance of a PCM-based triplex-tube containment system equipped with arc-shaped fins
title_sort numerical analysis of the energy-storage performance of a pcm-based triplex-tube containment system equipped with arc-shaped fins
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9792866/
https://www.ncbi.nlm.nih.gov/pubmed/36583152
http://dx.doi.org/10.3389/fchem.2022.1057196
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