首页> 外文会议>ASME/ISCIE international symposium on flexible automation 2012 >COMPARATIVE STUDY ON THERMAL BEHAVIOR OF LITHIUM-ION BATTERY SYSTEMS WITH INDIRECT AIR COOLING AND INDIRECT LIQUID COOLING
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COMPARATIVE STUDY ON THERMAL BEHAVIOR OF LITHIUM-ION BATTERY SYSTEMS WITH INDIRECT AIR COOLING AND INDIRECT LIQUID COOLING

机译:非直接空气冷却和非直接液体冷却的锂离子电池系统热性能的比较研究

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A comparative study is conducted on the thermal behavior of three Li-ion battery modules with two cooled indirectly with air and one cooled indirectly with liquid. All three battery modules are stacked with the same twelve 8Ahr high-power pouch Li-ion battery cells. Heat generated from the cells is dissipated through 1-mm thick aluminum cooling plates sandwiched between two cells in the module. Each of the cooling plates has an extended surface for heat dissipation. The battery heat is dissipated through the cooling fins exposed in air flow channels in the case of air cooling, and through the extended cooling plate surfaces that are in contact with a liquid-cooled cold plate in the case of liquid cooling. The cell temperatures are analyzed using a simplified Finite Element Analysis (FEA) model for battery cooling. Simulation results show that with air cooling channels structured similar to that of compact heat exchangers, the air utilization and effectiveness of air cooling can be improved significantly. With proper design of the air cooling channels (i.e. with fin inserts in the air flow channels), indirect air cooling could reach a cooling condition comparable to that of indirect liquid cooling and obtain a higher gravimetric energy density with the same cooling-related parasitic volume in the battery system as long as the cell heat rejection is < 10 W/cell.
机译:对三个锂离子电池模块的热性能进行了比较研究,其中两个用空气间接冷却,一个用液体间接冷却。所有三个电池模块都堆叠有相同的十二个8Ahr大功率袋装锂离子电池。电池产生的热量通过1毫米厚的铝制冷却板消散,该冷却板夹在模块中的两个电池之间。每个冷却板均具有用于散热的延伸表面。在进行空气冷却的情况下,电池的热量通过暴露在气流通道中的散热片散发,而在进行液体冷却的情况下,则通过与液体冷却的冷却板接触的延伸的冷却板表面进行散热。使用简化的有限元分析(FEA)模型分析电池温度,以进行电池冷却。仿真结果表明,采用与紧凑型热交换器相似的空气冷却通道,可以显着提高空气利用率和空气冷却效率。通过正确设计空气冷却通道(即在空气流动通道中带有散热片),间接空气冷却可以达到与间接液体冷却相当的冷却条件,并在相同的冷却相关寄生体积下获得更高的重量能量密度只要电池散热量小于10 W /电池,就可以在电池系统中使用。

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