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Dataset to support article: 'A new approach to the internal thermal management of cylindrical battery cells for automotive applications'

机译:支持文章的数据集:“一种用于汽车应用的圆柱形电池内部热管理的新方法”

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摘要

Conventional cooling approaches that target either a singular tab or outer surface of common format cylindrical lithium-ion battery cells suffer from a high cell thermal resistance. Under an aggressive duty cycle, this resistance can result in the formation of large in-cell temperature gradients and high hot spot temperatures, which are known to accelerate ageing and further reduce performance. In this paper, a novel approach to internal thermal management of cylindrical battery cells to lower the thermal resistance for heat transport through the inside of the cell is investigated. The effectiveness of the proposed method is analysed for two common cylindrical formats when subject to highly aggressive electrical loading conditions representative of a high performance electric vehicle (EV) and hybrid electric vehicle (HEV). A mathematical model that captures the dominant thermal properties of the cylindrical cell is created and validated using experimental data. Results from the extensive simulation study indicate that the internal cooling strategy can reduce the cell thermal resistance by up to 67.8 ± 1.4% relative to single tab cooling, and can emulate the performance of a more complex pack-level double tab cooling approach whilst targeting cooling at a single tab.
机译:针对单一格式的凸耳或普通型圆柱形锂离子电池外表面的常规冷却方法具有较高的电池热阻。在激进的占空比下,这种电阻会导致形成较大的电池内温度梯度和较高的热点温度,这会加速老化并进一步降低性能。在本文中,研究了一种新颖的圆柱形电池内部热管理方法,以降低通过电池内部进行热传递的热阻。当受到代表高性能电动汽车(EV)和混合电动汽车(HEV)的高强度电气负载条件的影响时,针对两种常见的圆柱体形式分析了该方法的有效性。使用实验数据创建并验证了捕获圆柱形电池主要热特性的数学模型。大量仿真研究的结果表明,内部冷却策略相对于单片冷却可以将电池的热阻降低多达67.8±1.4%,并且可以模拟更复杂的电池组双片冷却方法的性能,同时以冷却为目标在单个选项卡上。

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