Article detail · 2025
Numerical investigation on positional optimisation of extra air channels for conventional battery cooling models
- Year
- 2025
- Type
- article
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- YÖKSİS YÖKSİS article record
- YÖKSİS venue Physica Scripta
- Catalog match (ISSN) Physica Scripta
- OpenAlex OpenAlex enrichment (abstract, citations, topics)
Abstract
OpenAlex · English
Abstract Currently, as the use of electric vehicles is rapidly increasing, the battery pack that powers the system is one of the most important issues. Li-ion batteries are the most preferred battery type because of their high energy density, fast-charging capabilities, and long life. However, the heat generated by the current drawn by the system affects battery performance and poses safety risks. Effective battery thermal management systems (BTMSs) are required to quickly remove this heat from battery packs. For this purpose, three different models were created by adding extra air inlet channels to three points on the 4 × 6 battery module, and their cooling efficiency was investigated. Numerical analyses of the models were performed using the Ansys Fluent software package, and comparisons were made both among themselves and with the conventional model. The models (Basic Model, Model A, Model B and Model C) were analyzed at four different Reynolds numbers (104, 2 × 104, 3 × 104, and 4 × 104) calculated according to the air velocity and channel cross sections. Based on these results, the calculated Nusselt number (Nu), temperature values, friction factor, pressure drop, and PEC (performance criteria) values were obtained. Compared to the Base Model, the most effective methods were determined as Model A, Model B and Model C, respectively. Adding extra cooling channels to the battery module resulted in at least a 23.86% increase in Nu numbers, 40% lower pressure drop, and a 3.5% PEC number.
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Citations
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3 citations
OpenAlex cited_by_count (cache / database)
4 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).
- Enhancing Thermal Performance of Pin-Fin Heat Sinks Through Slot Orientation Modifications 2026
- Enhancing Thermal Performance of Pin-Fin Heat Sinks Through Slot Orientation Modifications 2025
- Kese Tipi Lityum-Polimer Bataryaların Altıgen Kesitli Kanatçıklar Kullanılarak Soğutulmasının Sayısal İncelenmesi 2026
- Numerical investigation of pulsating airflow for enhanced heat transfer and temperature uniformity in a multi-cell Li-ion battery module 2026