Advancements and comprehensive overview of thermal management systems for lithium-ion batteries: Nanofluids and phase change materials approaches
Zoubida Haddad
1
,
Dhiya Belkadi
2
,
Abed Mourad
3
,
Abderrahmane Aissa
3
,
Zafar Said
4, 5
,
Obai Younis
6
,
Anas Alazzam
7, 8
,
Eiyad Abu-Nada
7
1
Ecole Nationale Supérieure des Sciences de la Mer et de l'Aménagement du Littoral (ENSSMAL), Campus Universitaire de Dely Ibrahim Bois des Cars Dély, 16320, Ibrahim, Algeria
|
Тип публикации: Journal Article
Дата публикации: 2024-05-01
scimago Q1
wos Q1
БС1
SJR: 1.784
CiteScore: 14.9
Impact factor: 7.9
ISSN: 03787753, 18732755
Physical and Theoretical Chemistry
Electrical and Electronic Engineering
Energy Engineering and Power Technology
Renewable Energy, Sustainability and the Environment
Краткое описание
In recent years, there has been a growing demand for electrical vehicles, which are more energy efficient and environmentally friendly than their traditional counterpart. One of the crucial aspects of electrical systems is energy storage. A promising option for energy storage is Lithium-ion batteries (LIBs) due to their high energy density, longer life cycles, and faster charging when compared to other batteries. The disadvantage of employing LIBs is that they are more difficult to maintain because they are more prone to failure, and they are greatly dependent on the system's thermal behavior, which has led to an emphasis in research on battery thermal management systems (BTMSs). The BTMS aims to address this issue by limiting the temperature fluctuation of the battery cells to maintain the average temperature within recommended limits throughout the charging and discharging processes. There has been a continuous interest in nanofluids and phase change materials (PCMs) because of their unique properties and their potential thermal application as a cooling medium for high-density batteries. Recent studies have aimed to use different active and passive methods with varying materials and cooling system geometries to achieve the highest possible thermal performance. The current review aims to outline the recent studies on thermal management systems for LIBs. Three main sections have been presented in this paper. The first section reviewed studies on nanofluids in different BTMSs, the other one highlighted techniques adopted to overcome the low thermal conductivity drawback in PCMs for BTMs, and the last one focuses on the effects of combining both cooling approaches. We believe that the present review paper provides useful information that could be a significant step toward developing high-performance BTMS.
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36
Всего цитирований:
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ГОСТ
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Haddad Z. et al. Advancements and comprehensive overview of thermal management systems for lithium-ion batteries: Nanofluids and phase change materials approaches // Journal of Power Sources. 2024. Vol. 603. p. 234382.
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Haddad Z., Belkadi D., Mourad A., Aissa A., Said Z., Younis O., Alazzam A., Abu-Nada E. Advancements and comprehensive overview of thermal management systems for lithium-ion batteries: Nanofluids and phase change materials approaches // Journal of Power Sources. 2024. Vol. 603. p. 234382.
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TY - JOUR
DO - 10.1016/j.jpowsour.2024.234382
UR - https://linkinghub.elsevier.com/retrieve/pii/S0378775324003331
TI - Advancements and comprehensive overview of thermal management systems for lithium-ion batteries: Nanofluids and phase change materials approaches
T2 - Journal of Power Sources
AU - Haddad, Zoubida
AU - Belkadi, Dhiya
AU - Mourad, Abed
AU - Aissa, Abderrahmane
AU - Said, Zafar
AU - Younis, Obai
AU - Alazzam, Anas
AU - Abu-Nada, Eiyad
PY - 2024
DA - 2024/05/01
PB - Elsevier
SP - 234382
VL - 603
SN - 0378-7753
SN - 1873-2755
ER -
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BibTex (до 50 авторов)
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@article{2024_Haddad,
author = {Zoubida Haddad and Dhiya Belkadi and Abed Mourad and Abderrahmane Aissa and Zafar Said and Obai Younis and Anas Alazzam and Eiyad Abu-Nada},
title = {Advancements and comprehensive overview of thermal management systems for lithium-ion batteries: Nanofluids and phase change materials approaches},
journal = {Journal of Power Sources},
year = {2024},
volume = {603},
publisher = {Elsevier},
month = {may},
url = {https://linkinghub.elsevier.com/retrieve/pii/S0378775324003331},
pages = {234382},
doi = {10.1016/j.jpowsour.2024.234382}
}
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