과제정보
이 논문은 2022학년도 원광대학교의 교비 지원에 의해 수행됨.
참고문헌
- Osmani, K., 2023, "Recent progress in the thermal management of lithium-ion batteries", Journal of Cleaner Production, Volume 389, 136024.
- Aravindan, V., 2018, "Electrochemical Activity of Hematite Phase in Full-Cell Li-ion Assemblies", Advanced Energy Materials, Volume 8, 1702841.
- Tete, P. R., 2021, "Developments in battery thermal management systems for electric vehicles: A technical review", Journal of Energy Storage, Volume 35, 102255.
- Dongwoo, K., 2021, "Design of flow path with 2 inlet and outlets to improve cell performance and prevent cell degradation in Solid Oxide Fuel Cell", Journal of the Korean Society of Visualization, Volume 19(2), pp. 56-62 https://doi.org/10.5407/JKSV.2021.19.2.056
- Sungji, Y., 2022, "Comparison of Experimental and Simulation Results for Flow Characteristics around Jet Impingement/Effusion Hole in Concave Hemispherical Surface", Journal of the Korean Society of Visualization, Volume 20(2), pp. 28-37 https://doi.org/10.5407/JKSV.2022.20.2.028
- Hakeem Akinlabi, A. A., 2020, "Configuration, design, and optimization of air-cooled battery thermal management system for electric vehicles: A review", Renewable and Sustainable Energy Reviews, Volume 125, 109815.
- Kalaf, O., 2021, "Experimental and simulation study of liquid coolant battery thermal management system for electric vehicles: A review", International Journal of Energy Research, Volume 45, pp. 6495-6517. https://doi.org/10.1002/er.6268
- Kannan, C., 2021, "Critical review towards thermal management systems of lithium-ion batteries in electric vehicle with its electronic control unit and assessment tools", Journal of Automobile Engineering, Volume 235, pp. 1783-1807. https://doi.org/10.1177/0954407020982865
- He, L., 2023, "Review of thermal management system for battery electric vehicle", Journal of Energy Storage, Volume 59, 106443.
- Shin, D. H., 2019, "A new type of heat storage system using the motion of phase change materials in an elliptical-shaped capsule", Energy Conversion and Management, Volume 185, pp.508-519. https://doi.org/10.1016/j.enconman.2018.12.091
- Shin, D. H., 2022, "Development of a new type of PCM thermal capsule transport system", International Journal of Heat and Mass Transfer, Volume 183, 122034.
- Li, J., 2020, "Thermal characteristics of power battery module with composite phase change material and external liquid cooling", International Journal of Heat and Mass Transfer, Volume 156, 119820.
- Luo, J., 2022, "Battery thermal management systems (BTMs) based on phase change material (PCM): A comprehensive review", Chemical Engineering Journal, Volume 430, Part 1, 132741.
- Hallaj, S. AI., 2000, "A Novel Thermal Management System for Electric Vehicle Batteries Using Phase-Change Material", Journal of the Electrochemical Society, Volume 147, pp. 3231-3236. https://doi.org/10.1149/1.1393888
- Bai, F., 2019, "Thermal performance of pouch Lithium-ion battery module cooled by phase change materials", Energy Procedia, Volume 158, pp. 3682-3689. https://doi.org/10.1016/j.egypro.2019.01.891
- Moraga, N. O., 2016, "Cooling li-ion batteries of racing solar car by using multiple phase change materials", Applied Thermal Engineering, Volume 108, pp. 1041-1054. https://doi.org/10.1016/j.applthermaleng.2016.07.183
- Xiangwei, L., 2021, "Research Progress of Phase Change Storage Material on Power Battery Thermal Management", Energy Technology, Volume 9, Issue 4
- Bernardi, D., 1985, "A General Energy Balance for Battery Systems", J. Electrochem. Soc, Volume 132, No.1
- Dong, F., 2021, "Investigation and optimization on cooling performance of a novel double helix structure for cylindrical lithium-ion batteries", Applied Thermal Engineering, Volume 189, 116758
- Chitradeep, S., 2009, "Battery pack modeling for the analysis of battery management system of a hybrid electric vehicle", IEEE, pp. 207-2012
- Shaofei, W., 2020, "Thermal conductivity enhancement on phase change materials for thermal energy storage: A review", Energy Storage Materials,Volume 25, pp. 251-295 https://doi.org/10.1016/j.ensm.2019.10.010
- Ewelina, R., 2020, "The Impact of Heat Exchangers' Constructions on the Melting and Solidification Time of Phase Change Materials", energies, Volume 13, 4840