首页> 外文会议>ASME International Conference on Energy Sustainability;ASME Heat Transfer Conference >FLOWING ELECTROLYTE AS COOLANT INSIDE THE MICROGROOVES EMBEDDED IN THE ELECTRODES: A NOVEL THERMAL MANAGEMENT OF LI-ION BATTERIES
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FLOWING ELECTROLYTE AS COOLANT INSIDE THE MICROGROOVES EMBEDDED IN THE ELECTRODES: A NOVEL THERMAL MANAGEMENT OF LI-ION BATTERIES

机译:电解液中流动的电解质作为电极中嵌入的微槽:对锂离子电池的新型热管理

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One way to enhance thermal performance of the Li-ion batteries is embedding microgrooves inside the porous electrodes and flowing the electrolyte through these microgrooves. A2D thermal Lattice Boltzmann Method (LBM) was employed to predict electrolyte flow, heat transfer, and internal heat generation inside the positive porous electrode. Size and number of the microgrooves were investigated, and it was found that embedding microgrooves inside the porous electrode improved the thermal performance of the Li-ion battery by keeping the electrode in lower temperatures and improving its temperature uniformity. Furthermore, increasing the number of microgrooves (in a constant ratio between total size of the microgrooves to size of the porous electrode) kept the porous electrode in lower temperatures and enhanced temperature uniformity.
机译:增强锂离子电池热性能的一种方法是将微沟槽嵌入多孔电极内部,并使电解质流过这些微沟槽。 A2D热格子玻尔兹曼方法(LBM)用于预测正极多孔电极内部的电解质流动,传热和内部热量产生。研究了微沟槽的尺寸和数量,发现将微沟槽嵌入到多孔电极中可以通过将电极保持在较低温度并改善其温度均匀性来改善锂离子电池的热性能。此外,增加微槽的数量(以微槽的总尺寸与多孔电极的尺寸之间的恒定比率)将多孔电极保持在较低的温度下并提高了温度均匀性。

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