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Optimization of the passive thermal control system of a lithium-ion battery with heat pipes embedded in an aluminum plate

机译:铝板中嵌入热管的锂离子电池被动热控制系统的优化

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In the design and operation of batteries, effective heat transfer and protection against high operation temperatures are significant issues affecting the lifetime of the battery. This is particularly the case for batteries intended for hybrid machines, where the peak power and current requirements are high. This paper introduces a structure of the thermal protection system for the high-power lithium-ion batteries to be applied to hybrid machines and a methodology for their optimization. The proposed structure is based on the use of metal plates and heat pipes, providing an opportunity to decrease the nonuniform temperature distribution in pouch-type cells. The efficiency of the proposed thermal control system is verified by modeling in Comsol Multiphysics, which is connected to MATLAB for the optimization of the placement and number of heat pipes. Multidimensional unconstrained nonlinear minimization is applied during the optimization in MATLAB.
机译:在电池的设计和操作中,有效的热传递和防止高温运行是影响电池寿命的重要问题。对于用于峰值功率和电流要求很高的混合动力机器的电池,尤其如此。本文介绍了用于混合动力机器的大功率锂离子电池热保护系统的结构以及优化方法。所提出的结构基于金属板和热管的使用,从而提供了减少袋式电池中温度分布不均匀的机会。通过在Comsol Multiphysics中进行建模验证了所提出的热控制系统的效率,该模型已连接至MATLAB,以优化热管的放置和数量。在MATLAB优化过程中应用了多维无约束非线性最小化。

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