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Thermal Modeling of a Lithium-Ion Battery Pack in a Plug-in Hybrid Electric Vehicle

机译:插入式混合动力电动车中锂离子电池组的热建模

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This paper presents thermal modeling of a lithium-ion battery pack to be used in a Plug-in Hybrid Electrical Vehicle (PHEV). The battery pack consists of eight modules (totally 96 prismatic cells) cooled by circulating 50/50 ethylene glycol-water mixture in a cold plate. Three cases, e.g., (a) battery heating up from -30 C environment, (b) high-speed ramping in pure electrical driving mode, and (c) NEDC cycle in pure electrical driving mode, were modeled using a 1D simulation software. To study the internal temperature variation inside modules, each battery module was further decomposed into three nodes in the height direction, showing 5-8 C temperature variation. We also conducted CFD to study the fluid flow and heat transfer in the cold plates, and the results are in great agreement with theoretical predictions. The work provides deep insight of thermal physics and can greatly help thermal design of the battery pack.
机译:本文介绍了锂离子电池组的热建模,以用于插入式混合电动车(PHEV)。电池组由8个模块(共96个棱镜电池)组成,通过在冷板中循环50/50乙二醇 - 水混合物而冷却。三种情况下,例如(a)从-30 c环境加热,(b)在纯电驱动模式下的高速斜坡,(c)在纯电驱动模式下的nedc循环,使用1d仿真软件进行建模。为了研究模块内的内部温度变化,每个电池模块进一步在高度方向上分解成三个节点,显示5-8℃的温度变化。我们还进行了CFD,研究了冷板中的流体流动和热传递,结果与理论预测很大。该工作提供了热物理的深层洞察力,可以极大地帮助电池组的热设计。

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