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Thermal studies on battery packs with different geometric configuration of 18650 cells

机译:具有18650电池不同几何构造的电池组的热研究

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Electric vehicles are coming into fame in recent times in many of the countries as there is zero tail-pipe emissions. In line with this Indian government plans to migrate to full electric vehicles by 2030 in order to reduce the environmental pollution caused by existing conventional internal combustion engines. Currently lithium-ion battery is widely used as energy source in electric vehicles and hence many of the domestic and international OEMs started their aggressive research in the field of battery. It is known that battery needs to be operated at defined operating temperature range for maximum performance and hence battery thermal management plays a vital role. In this work, thermal management strategies with different geometrical cell arrangements for a battery pack consisting of 18650 format LiNiMnCo cylindrical cells are studied using Ansys FLUENT for natural convection and forced convection conditions. Studies showed that air cooling with fan placed at the top side of the box maintains uniform temperature distribution across the battery pack irrespective of the cell arrangement.
机译:由于尾气排放为零,因此在许多国家/地区,电动汽车近来成名。根据这项政策,印度政府计划在2030年前向全电动汽车过渡,以减少现有常规内燃机对环境的污染。目前,锂离子电池已被广泛用作电动汽车的能源,因此许多国内外OEM厂商开始在电池领域进行积极的研究。众所周知,电池需要在限定的工作温度范围内工作才能发挥最大性能,因此电池热管理起着至关重要的作用。在这项工作中,针对自然对流和强制对流条件,使用Ansys FLUENT研究了由18650格式LiNiMnCo圆柱形电池组成的电池组具有不同几何单元布置的热管理策略。研究表明,使用风扇放置在盒子顶部的空气冷却可在整个电池组上保持均匀的温度分布,而与电池单元的布置无关。

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