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Thermal performance of mini-channel liquid cooled cylinder based battery thermal management for cylindrical lithium-ion power battery

机译:圆柱型锂离子动力电池微通道液冷圆柱型电池热管理的热性能

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Battery thermal management is a very active research focus in recent years because of its great essentiality for electric vehicles. In order to maintain the maximum temperature and local temperature difference in appropriate range, a new kind of cooling method for cylindrical batteries which is based on mini-channel liquid cooled cylinder is proposed in this paper. The effects of channel quantity, mass flow rate, flow direction and entrance size on the heat dissipation performance were investigated numerically. The results showed that the maximum temperature can be controlled under 40 degrees C for 42,110 cylindrical batteries when the number of mini-channel is no less than four and the inlet mass flow rate is 1 x 10(-3) - kg/s. Considering both the maximum temperature and local temperature difference, the cooling style by liquid cooled cylinder can demonstrate advantages compared to natural convection cooling only when the channel number is larger than eight. The capability of reducing the maximum temperature is limited through increasing the mass flow rate. The capacity of heat dissipation is enhanced first and then weakened along with the rising of entrance size, when the inlet mass flow rate is constant. (C) 2015 Elsevier Ltd. All rights reserved.
机译:由于电池热管理对电动汽车非常重要,因此近年来电池热管理是一个非常活跃的研究重点。为了将最高温度和局部温差维持在适当的范围内,提出了一种基于微通道液冷缸的新型圆柱电池冷却方法。数值研究了通道数量,质量流量,流向和入口尺寸对散热性能的影响。结果表明,当微型通道数不少于四个且入口质量流量为1 x 10(-3)-kg / s时,42,110个圆柱形电池的最高温度可以控制在40摄氏度以下。考虑到最高温度和局部温差,仅当通道数大于8时,液冷气缸的冷却方式与自然对流冷却相比才能显示出优势。通过增加质量流量来限制降低最高温度的能力。当入口质量流量恒定时,散热能力首先增强,然后随着入口尺寸的增加而减弱。 (C)2015 Elsevier Ltd.保留所有权利。

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