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首页> 外文期刊>International Journal of Heat and Mass Transfer >Lightweight liquid cooling based thermal management to a prismatic hard-cased lithium-ion battery
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Lightweight liquid cooling based thermal management to a prismatic hard-cased lithium-ion battery

机译:基于轻质液体冷却的热管理到棱镜硬壳锂离子电池

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摘要

The lightweight thermal design is a critical factor that must be taken into consideration during the lithium-ion battery pack manufacturing for electric vehicles. This work develops a lightweight liquid cooling solution to cool a prismatic hard-cased cell from its small lateral surfaces. The effects of fluid flow directions, flow rates, channel dimensions, and cooling mediums on the cell's thermal distribution were studied. Meanwhile, a dimensionless analysis for the cooling plate performance was imposed. The simulation effectiveness was corroborated through experiments. Simulations show that the lightweight thermal design has a similar cooling effect with the conventional thermal design; crucially, the former can lower the cooling plate weight by 57% compared with the later. Effect of increasing fluid flow rate on minimizing the cell's temperature rise and difference is positive and negative, respectively. Increasing fluid flow rate and channel width can promote the cooling plate performance. The glycol aqueous solution outperforms the liquid water to weaken the cell's temperature difference. Experiments authenticating that an excellent effectiveness residing in the current lightweight thermal design to control the cell thermal profile within a desirable level. This work would be valuable for one to design a lightweight cooling system for a battery pack consists of prismatic hard-cased cells.
机译:轻质热设计是在电动车辆的锂离子电池组制造期间必须考虑的关键因素。这项工作开发了一种轻质液体冷却溶液,以冷却来自其小横向表面的棱柱形硬甲壳电池。研究了流体流动方向,流速,通道尺寸和冷却介质对细胞的热分布的影响。同时,施加了对冷却板性能的无量纲分析。通过实验证实了模拟效果。仿真表明,轻质热设计具有与传统的热设计类似的冷却效果;与后来相比,前者可以将冷却板重量降低57%。增加流体流速对最小化细胞的温度升高和差异​​的影响分别为正且阴性。增加流体流速和通道宽度可以促进冷却板性能。乙二醇水溶液优于液态水以削弱细胞的温差。实验验证,驻留在当前的轻质热设计中的优异效果,以控制所需水平的电池热曲线。这项工作对于设计一个用于电池组的轻质冷却系统是有价值的,包括棱柱形硬壳电池。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2021年第5期|120998.1-120998.13|共13页
  • 作者单位

    School of Mechanical Engineering University of Shanghai for Science and Technology Shanghai 200093 PR China School of Energy and Power Engineering University of Shanghai for Science and Technology Shanghai 200093 PR China;

    School of Mechanical Engineering University of Shanghai for Science and Technology Shanghai 200093 PR China School of Mechanical and Automotive Engineering Shanghai University of Engineering Science Shanghai 201620 PR China;

    School of Energy and Power Engineering University of Shanghai for Science and Technology Shanghai 200093 PR China;

    School of Energy and Power Engineering University of Shanghai for Science and Technology Shanghai 200093 PR China;

    School of Mechanical Engineering University of Shanghai for Science and Technology Shanghai 200093 PR China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Prismatic hard-cased lithium-ion battery; Liquid cooling method; Dimensionless analysis; Numerical simulation; Experimental verification;

    机译:棱柱形硬壳锂离子电池;液体冷却方法;无量纲分析;数值模拟;实验验证;

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