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Design improvement of thermal management for Li-ion battery energy storage systems

机译:锂离子电池储能系统热管理设计改进

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Thermal management of lithium-ion battery cells provides several advantages to reach high performance electric-vehicles and hybrid-electric-gadgets. Geometrical features and patterns of internal channels of liquid cooling plate (LCP) are key factors for the battery cell cooling efficiency. This paper concerns a new design of battery thermal management and the effect of ribbed channels with double inlets and outlets on the reduction of mass flowrate in the coolant channels of LCP, the hydrothermal performance factor of the battery, the friction coefficient, and the reduction of pumping power by utilizing comprehensive 3D simulations. The Conjugate Heat Transfer approach is employed for the fluid flow and the heat transfer calculations. To enhance the heat transfer surface and cooling efficiency, longitudinal ribs are considered in four different configurations inside the cooling channels. Furthermore, the effects of ribs on the aforementioned parameters in comparison with the non-rib channels are investigated. The results demonstrated that the optimized ribbed configuration increases the total amount of heat transfer by up to 68%, reduces the mass flowrate to 16%, and lowers the pumping power by 20% in comparison with rib-less channels. Meanwhile, the hydrothermal cooling performance factor of enhanced up to 58% and the maximum temperature approximately remains constant.
机译:锂离子电池电池的热管理提供了达到高性能电动车和混合电动小工具的几个优点。液体冷却板(LCP)内部通道的几何特征和图案是电池电池冷却效率的关键因素。本文涉及电池热管理的新设计以及带双口径和出口的罗纹通道的效果,在LCP的冷却剂通道中减少质量流量,电池的水热性能因子,摩擦系数和减少利用全面的3D模拟抽取功率。共轭传热方法用于流体流动和传热计算。为了增强传热表面和冷却效率,在冷却通道内的四个不同的配置中考虑纵向肋。此外,研究了与非肋道通道相比上述参数对上述参数的效果。结果表明,优化的罗纹配置将热量传递的总量增加到68%,将质量流量降低至16%,并与肋条的通道相比,将泵送功率降低20%。同时,水热冷却性能增强高达58%,最大温度大致保持恒定。

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