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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Thermal behaviors analysis of 55 Ah large-format lithium-ion pouch cells with different cell aspect ratios, tab locations, and C-rates
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Thermal behaviors analysis of 55 Ah large-format lithium-ion pouch cells with different cell aspect ratios, tab locations, and C-rates

机译:具有不同细胞纵横比,标签位置和C率的55 AH大型锂离子袋细胞的热行为分析

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摘要

Recently, large-format LIBs have a problem with product life due to temperature deviation. In this study, a three-dimensional electrochemical-thermal coupled model of 55 Ah large-format LIBs is used to analyze the effect of cell aspect ratios, tab locations, and C-Rates on thermal behavior during discharge. Results show that when the cell aspect ratio becomes far from 2.15, heat generation becomes non-uniform and the temperature deviation increases. The closer the tabs are located, the more temperature deviation increases. The effect of cell aspect ratio and tab location on temperature deviation is increased as higher C-Rate. Also, the effect of cell aspect ratio on the temperature deviation of LIB is larger than tab location. The main cause of temperature deviation comes from different heat generation of each component of the LIB, which is reversible heat and irreversible heat (Joule heat). The influence of irreversible heat is dominant at higher C-rate. Therefore, at higher C-rate, the temperature deviation is effectively reduced by adjusting the cell aspect ratio and tab location that affect current density distribution. In this study, the minimum temperature standard deviation is shown when the cell aspect ratio is 2.15 and negative-positive tabs are located on the opposite side of the cell.
机译:最近,大幅度Libs由于温度偏差而具有产品寿命的问题。在该研究中,使用55Ah大型Libs的三维电化学 - 热耦合模型来分析小区纵横比,突起位置和C率对放电期间热行为的影响。结果表明,当电池纵横比远离2.15时,发热变得不均匀,温度偏差增加。突片越靠近,温度偏差越多。细胞纵横比和突片位置对温度偏差的影响随着较高的C速率而增加。而且,细胞纵横比对Lib温度偏差的影响大于突片位置。温度偏差的主要原因来自于LIB的每种组分的不同发热,这是可逆的热和不可逆的热量(焦耳热)。不可逆热量的影响以较高的C速率显着。因此,在较高的C速率下,通过调节影响电流密度分布的单元纵横比和突片位置,有效地减少了温度偏差。在该研究中,当电池纵横比为2.15时,将显示最小温度标准偏差,并且负正凸片位于电池的相对侧。

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