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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Performance investigation of a battery thermal management system with microencapsulated phase change material suspension
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Performance investigation of a battery thermal management system with microencapsulated phase change material suspension

机译:微胶囊化相变材料悬架电池热管理系统的性能调查

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In electric vehicles, the performance of the battery thermal management system (BTMS) is closely related to the life and safety of the power batteries. Microencapsulated phase change material suspension (MEPCMS) has good thermal management property, and has been used in many fields of industry. In order to investigate the feasibility of applying MEPCMS to the BTMS, a BTMS model using liquid cold plates is established. It is found that compared with natural heat dissipation condition, using water or MEPCMS as the coolant can significantly reduce the maximum temperatures of the tabs and on the battery body at the end of 5C discharge, but increase the maximum temperature difference on the battery body. The effects of the flow rate of the MEPCMS, the volume fraction of the microencapsulated phase change material (MEPCM), the latent heat and the melting temperature range of the phase change material (PCM) on the thermal management performance are investigated. All these above design parameters can significantly affect the temperature distribution of the battery. Based on the analysis results, an improved design using MEPCMS as the coolant is obtained, and its performance is better than that using water.
机译:在电动车辆中,电池热管理系统(BTMS)的性能与电力电池的寿命和安全密切相关。微胶囊化相变材料悬浮液(Mepcms)具有良好的热管理性能,并已在许多行业领域使用。为了研究将Mepcms应用于BTMS的可行性,建立了使用液体冷板的BTMS模型。发现与天然散热条件相比,使用水或Mepcms作为冷却剂可以显着降低突片的最大温度和在5C放电结束时的电池体上的最大温度,但是增加了电池体上的最大温差。研究了Mepcms的流速的影响,微胶囊化相变材料(Mepcm)的体积分数,相变材料(PCM)的热管理性能的潜热和熔化温度范围。所有这些上面的设计参数都可以显着影响电池的温度分布。基于分析结果,获得了使用Mepcms作为冷却剂的改进设计,其性能优于使用水。

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