Optimisation of thermal energy storage systems incorporated with phase change materials for sustainable energy supply: A systematic review DOI Creative Commons
Flavio Odoi-Yorke, Richard Opoku, Francis Davis

et al.

Energy Reports, Journal Year: 2023, Volume and Issue: 10, P. 2496 - 2512

Published: Sept. 20, 2023

Thermal energy storage systems, also known as thermal batteries integrated with phase change materials, have gained significant attention in recent years a promising solution for sustainable supply. can significantly promote supply by boosting the efficiency and reliability of renewable enhancing access isolated regions, lowering greenhouse gas emissions, security. However, there are still challenges to optimising these systems maximise their effectiveness. This study presents systematic literature review various industrial, commercial, domestic applications. The preferred reporting items reviews meta-analyses guidelines were adopted this review. primary objective was identify factors affecting battery performance. Data collection focused on research papers published from 2013–2023 extracted Scopus, Web Science, Google Scholar databases. findings highlight importance considering material thermophysical properties, design configurations, operating conditions when batteries. Also, highlights current state knowledge field suggests future development directions. In particular, artificial intelligence machine learning suggested faster more precise optimisation useful academia industries promoting adoption solutions greener resilient future.

Language: Английский

Battery electric vehicles: Progress, power electronic converters, strength (S), weakness (W), opportunity (O), and threats (T) DOI Creative Commons
A.G. Olabi, Mohammad Ali Abdelkareem,

Tabbi Wilberforce

et al.

International Journal of Thermofluids, Journal Year: 2022, Volume and Issue: 16, P. 100212 - 100212

Published: Sept. 13, 2022

The rely on internal combustion engines is gradually decreased with the recent evolution of electric vehicles (EVs) in automotive industry. Electric motors are replacing energy systems mainly to improve powertrain's efficiency and ensure they environmentally friendly. These novel powertrains designed operate solely batteries or supercapacitors. For these types EVs, battery charged using an alternating current supply connection grid case plug-in vehicles. Internal equally used for some hybrid Charging can also be carried out via regenerative braking from traction motor. This study presents a brief background about different available detailed information various power converter electronics vehicles, summary strengths (S), weaknesses (W), opportunities (O), threats (T) EV presented. Moreover, SWOT analysis (BEV) their prospects industry introduced.

Language: Английский

Citations

65

A review on recent key technologies of lithium-ion battery thermal management: External cooling systems DOI Creative Commons

Marwa Mahmoud Hamed,

A. El-Tayeb,

Ibrahim Moukhtar

et al.

Results in Engineering, Journal Year: 2022, Volume and Issue: 16, P. 100703 - 100703

Published: Oct. 18, 2022

Recently, due to having features like high energy density, efficiency, superior capacity, and long-life cycle in comparison with the other kinds of dry batteries, lithium-ion batteries have been widely used for storage many applications e.g., hybrid power micro grids, electric vehicles, medical devices. However, performance degradation safety issues exist because abnormal temperature increment cell. So that guarantee enhance its performance; must be preserved during operation a specific range temperature. So, an adequate battery thermal management system (BTMS) is needed reduce maximum battery. In literature, BTMS can classed as either internal or external systems based upon which battery's treated, one. This article introduces updated comprehensive review research interested strategies provide deep understanding recent key technologies BTMS. addition, practical guidelines recommended enhancing applicability such technology.

Language: Английский

Citations

61

Potential applications of thermoelectric generators (TEGs) in various waste heat recovery systems DOI Creative Commons
A.G. Olabi, Mohammed Al-Murisi, Hussein M. Maghrabie

et al.

International Journal of Thermofluids, Journal Year: 2022, Volume and Issue: 16, P. 100249 - 100249

Published: Nov. 1, 2022

Nowadays the World faces critical issues, such as increasing population, power costs, and global warming. In this respect, scientists are trying to improve efficiency of energy harvesting. The enhancement generation sectors is focused on waste heat recovery systems based thermoelectric generators (TEGs) that have demonstrated capacity transfer thermal directly into electric via Seebeck effect. TEG uses available sources in different applications produce power, thus it considered an eco-friendly source. present study, integration with other technologies for green production introduced. This work introduces a background about common materials used fabrication devices. Furthermore, application harvest from sources, i.e., fuel cells, exchangers, photovoltaics, internal combustion engine, vehicles, hybrid been summarized. characteristics discussed, considering operating design parameters. Finally, barriers challenges facing also discussed.

Language: Английский

Citations

61

Recovery of waste heat from proton exchange membrane fuel cells – A review DOI

Tabbi Wilberforce,

A.G. Olabi, Muhammad Imran

et al.

International Journal of Hydrogen Energy, Journal Year: 2022, Volume and Issue: 52, P. 933 - 972

Published: Sept. 14, 2022

Language: Английский

Citations

54

Optimisation of thermal energy storage systems incorporated with phase change materials for sustainable energy supply: A systematic review DOI Creative Commons
Flavio Odoi-Yorke, Richard Opoku, Francis Davis

et al.

Energy Reports, Journal Year: 2023, Volume and Issue: 10, P. 2496 - 2512

Published: Sept. 20, 2023

Thermal energy storage systems, also known as thermal batteries integrated with phase change materials, have gained significant attention in recent years a promising solution for sustainable supply. can significantly promote supply by boosting the efficiency and reliability of renewable enhancing access isolated regions, lowering greenhouse gas emissions, security. However, there are still challenges to optimising these systems maximise their effectiveness. This study presents systematic literature review various industrial, commercial, domestic applications. The preferred reporting items reviews meta-analyses guidelines were adopted this review. primary objective was identify factors affecting battery performance. Data collection focused on research papers published from 2013–2023 extracted Scopus, Web Science, Google Scholar databases. findings highlight importance considering material thermophysical properties, design configurations, operating conditions when batteries. Also, highlights current state knowledge field suggests future development directions. In particular, artificial intelligence machine learning suggested faster more precise optimisation useful academia industries promoting adoption solutions greener resilient future.

Language: Английский

Citations

36