Review on Battery Packing Design Strategies for Superior Thermal Management in Electric Vehicles

被引:16
作者
Widyantara, Robby Dwianto [1 ,2 ]
Zulaikah, Siti [3 ]
Juangsa, Firman Bagja [1 ]
Budiman, Bentang Arief [1 ,3 ]
Aziz, Muhammad [2 ]
机构
[1] Inst Teknol Bandung, Fac Mech & Aerosp Engn, Bandung 40132, Indonesia
[2] Univ Tokyo, Inst Ind Sci, Tokyo 1538505, Japan
[3] Inst Teknol Bandung, Natl Ctr Sustainable Transportat Technol, Bandung 40132, Indonesia
来源
BATTERIES-BASEL | 2022年 / 8卷 / 12期
关键词
battery pack; design strategies; thermal management; lithium-ion battery; electric vehicles; LITHIUM-ION BATTERY; SOLID-STATE BATTERIES; HEAT-GENERATION; ELECTROCHEMICAL PERFORMANCE; ELECTROLYTE ADDITIVES; CATHODE MATERIAL; SYSTEM; HYBRID; DEGRADATION; OPERATION;
D O I
10.3390/batteries8120287
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
In the last decades of electric vehicle (EV) development, battery thermal management has become one of the remaining issues that must be appropriately handled to ensure robust EV design. Starting from researching safer and more durable battery cells that can resist thermal exposure, battery packing design has also become important to avoid thermal events causing an explosion or at least to prevent fatal loss if the explosion occurs. An optimal battery packing design can maintain the battery cell temperature at the most favorable range, i.e., 25-40 degrees C, with a temperature difference in each battery cell of 5 degrees C at the maximum, which is considered the best working temperature. The design must also consider environmental temperature and humidity effects. Many design strategies have been reported, including novel battery pack constructions, a better selection of coolant materials, and a robust battery management system. However, those endeavors are faced with the main challenges in terms of design constraints that must be fulfilled, such as material and manufacturing costs, limited available battery space and weight, and low energy consumption requirements. This work reviewed and analyzed the recent progress and current state-of-the-art in designing battery packs for superior thermal management. The narration focused on significant findings that have solved the battery thermal management design problem as well as the remaining issues and opportunities to obtain more reliable and enduring batteries for EVs. Furthermore, some recommendations for future research topics supporting the advancement of battery thermal management design were also discussed.
引用
收藏
页数:20
相关论文
共 130 条
  • [1] Characterization of commercial Li-ion batteries using electrochemical-calorimetric measurements
    Al Hallaj, S
    Prakash, J
    Selman, JR
    [J]. JOURNAL OF POWER SOURCES, 2000, 87 (1-2) : 186 - 194
  • [2] Novel thermal management system using boiling cooling for high-powered lithium-ion battery packs for hybrid electric vehicles
    Al-Zareer, Maan
    Dincer, Ibrahim
    Rosen, Marc A.
    [J]. JOURNAL OF POWER SOURCES, 2017, 363 : 291 - 303
  • [3] Alves Dias P., 2018, COBALT DEMAND SUPPLY
  • [4] Review of mechanical design and strategic placement technique of a robust battery pack for electric vehicles
    Arora, Shashank
    Shen, Weixiang
    Kapoor, Ajay
    [J]. RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2016, 60 : 1319 - 1331
  • [5] Structural Changes and Thermal Stability of Charged LiNixMnyCozO2 Cathode Materials Studied by Combined In Situ Time-Resolved XRD and Mass Spectroscopy
    Bak, Seong-Min
    Hu, Enyuan
    Zhou, Yongning
    Yu, Xiqian
    Senanayake, Sanjaya D.
    Cho, Sung-Jin
    Kim, Kwang-Bum
    Chung, Kyung Yoon
    Yang, Xiao-Qing
    Nam, Kyung-Wan
    [J]. ACS APPLIED MATERIALS & INTERFACES, 2014, 6 (24) : 22594 - 22601
  • [6] A Database for Comparative Electrochemical Performance of Commercial 18650-Format Lithium-Ion Cells
    Barkholtz, Heather M.
    Fresquez, Armando
    Chalamala, Babu R.
    Ferreira, Summer R.
    [J]. JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2017, 164 (12) : A2697 - A2706
  • [7] Berdichevsky G., 2006, The Tesla Roadster Battery System
  • [8] Electric Vehicle Batteries Eye Solid-State Technology
    Bindra, Ashok
    [J]. IEEE POWER ELECTRONICS MAGAZINE, 2020, 7 (01): : 16 - 19
  • [9] Mechanical damages in solid electrolyte battery due to electrode volume changes
    Budiman, Bentang Arief
    Saputro, Andy
    Rahardian, Samuel
    Aziz, Muhammad
    Sambegoro, Poetro
    Nurprasetio, Ignatius Pulung
    [J]. JOURNAL OF ENERGY STORAGE, 2022, 52
  • [10] Structural integrity of lithium-ion pouch battery subjected to three-point bending
    Budiman, Bentang Arief
    Rahardian, Samuel
    Saputro, Andy
    Hidayat, Arif
    Nurprasetio, Ignatius Pulung
    Sambegoro, Poetro
    [J]. ENGINEERING FAILURE ANALYSIS, 2022, 138