A Comprehensive Parametric Study of Minichannel Based Liquid Cooling of Li-Ion Battery Pack

Z. An, K. Shah, Yanbao Ma, Jia Li
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Abstract

Li-ion based energy storage devices have highly temperature dependent characteristics such as performance, life-cycle, efficiency and safety. Large temperature gradient within a cell results in thermal stresses and nonuniform current density leading to accelerated degradation. This adversely affects the life cycle of the cell due to capacity and power fade. There are similar issues due to large temperature variation within a battery pack. Operation of Li-ion cell outside the desirable temperature range also leads to lower efficiency, degradation and safety related issues. Different thermal management approaches have been proposed and demonstrated in past. The present work focuses specifically on minichannel based liquid cooling for conducting a parametric study. Minichannels have been found effective in various thermal management applications due to their simple construction and high convective heat transfer. In past, minichannels have been proposed and used in battery thermal management. However, designing of such systems has been somewhat arbitrary without considering various factors and trade-offs involved. There is a lack of rigorous studies for determining various parameters related to thermal management system that would result in adequate thermal management in a cost-effective manner. In the present work, a comprehensive parametric study has been carried out on the minichannel based liquid cooling for thermal management of Li-ion battery pack. A simplified computationally efficient numerical simulation-based approach has been used to conduct parametric study for optimizing the design and operating parameters of the thermal management system.
锂离子电池组小通道液体冷却的综合参数研究
锂离子储能装置具有高度的温度依赖性,如性能、寿命周期、效率和安全性。电池内部温度梯度大,会产生热应力和不均匀的电流密度,导致电池加速降解。由于容量和功率衰减,这会对电池的生命周期产生不利影响。由于电池组内的温度变化很大,也存在类似的问题。锂离子电池在理想温度范围之外的运行也会导致效率降低、降解和安全相关问题。不同的热管理方法已经提出并证明了过去。目前的工作主要集中在基于小通道的液体冷却进行参数研究。由于其结构简单,对流换热能力强,小通道在各种热管理应用中都是有效的。过去,微型通道已被提出并用于电池热管理。然而,这种系统的设计有些武断,没有考虑到各种因素和所涉及的权衡。在确定与热管理系统相关的各种参数方面,缺乏严格的研究,这些参数将导致以经济有效的方式进行适当的热管理。本文对锂离子电池组热管理的小通道液体冷却进行了全面的参数化研究。采用简化计算效率高的数值模拟方法对热管理系统的设计和运行参数进行了参数化研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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