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Design and simulation of a lithium-ion battery with a phase change material thermal management system for an electric scooter

机译:电动滑板车相变材料热管理系统锂离子电池的设计与仿真

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摘要

A lithium-ion battery employing a novel phase change material (PCM) thermal management system was designed for an electric scooter. Passive thermal management systems using PCM can control the temperature excursions and maintain temperature uniformity in Li-ion batteries without the use of active cooling components such as a fan, a blower or a pump found in air/liquid-cooling systems. Hence, the advantages of a compact, lightweight, and energy efficient system can be achieved with this novel form of thermal management system. Simulation results are shown for a Li-ion battery sub-module consisting of nine 18650 Li-ion cells surrounded by PCM with a melting point between 41 and 44℃. The use of aluminum foam within the PCM and fins attached to the battery module were studied to overcome the low thermal conductivity of the PCM and the low natural convection heat transfer coefficient. The comparative results of the PCM performance in the presence of Al-foam and Al-fins are shown. The battery module is also simulated for summer and winter conditions. The effect of air-cooling on the Li-ion battery was also studied. These simulation results demonstrate the successful use of the PCM as a potential candidate for thermal management solution in electric scooter applications and therefore for other electric vehicle applications.
机译:为电动踏板车设计了采用新型相变材料(PCM)热管理系统的锂离子电池。使用PCM的被动式热管理系统可以控制锂离子电池的温度偏移并保持温度均匀性,而无需使用空气/液体冷却系统中的主动冷却组件,例如风扇,鼓风机或泵。因此,利用这种新颖形式的热管理系统可以实现紧凑,轻便和节能的系统的优点。仿真结果显示了一个锂离子电池子模块,该模块由9个18650锂离子电池组成,被PCM包围,熔点在41到44℃之间。为了克服PCM的低热导率和低自然对流传热系数,研究了在PCM内使用泡沫铝和连接至电池模块的散热片。显示了在铝泡沫和铝翅片存在下PCM性能的比较结果。还针对夏季和冬季条件对电池模块进行了仿真。还研究了空气冷却对锂离子电池的影响。这些仿真结果证明了PCM作为电动踏板车应用以及其他电动车辆应用的热管理解决方案的潜在候选者的成功使用。

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