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Asymptotic reduction and homogenization of a thermo-electrochemical model for a lithium-ion battery

机译:锂离子电池热电化学模型的渐近还原和均质化

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In this study, matched asymptotic expansions are used to systematically reduce a thermo-electrochemical model of a lithium-ion battery based on volume averaging the electrode microstructure. In the cases with a constant or oscillating applied current, explicit asymptotic solutions of the full model can be obtained. In the case with a constant cell potential, the reduced model comprises a low-order differential-algebraic system. The asymptotic and numerical solutions of the volume-averaged model are compared with the numerical solutions of a thermal pseudo-two-dimensional (P2D) model, which treats the electrode as a collection of spherical particles. Excellent agreement is found between the models at (dis)charge rates up to 2C, and reasonable agreement is found at 4C. Homogenization is then used to derive a thermal model of a battery comprising several connected lithium-ion cells. We derive a closed-form solution to the homogenized model when the effective Biot number is small, which corresponds to a spatially uniform battery temperature. By comparing simulation times, we show that the asymptotically reduced and homogenized models provide substantial computational savings compared with the full numerical simulations, thereby making them ideal for use in onboard thermal management systems. We also show that thermal runaway does not occur in the model, despite accounting for the Arrhenius dependence of the reaction coefficients.
机译:在这项研究中,基于体积平均的电极微观结构,使用匹配的渐近扩展来系统地减少锂离子电池的热电化学模型。在施加恒定电流或振荡电流的情况下,可以获得完整模型的显式渐近解。在具有恒定单元势的情况下,简化模型包括低阶微分代数系统。将体积平均模型的渐近解和数值解与热伪二维(P2D)模型的数值解进行比较,该模型将电极视为球形颗粒的集合。在高达2C的放电速率下,模型之间发现了极好的一致性,而在4C时发现了合理的一致性。然后使用均质化来推导包含多个连接的锂离子电池的电池的热模型。当有效比奥数较小时,我们得出均质模型的闭式解,这对应于空间均匀的电池温度。通过比较仿真时间,我们显示出与完全数值仿真相比,渐近简化和均质化的模型可节省大量计算量,从而使其理想地用于车载热管理系统。我们还表明,尽管考虑了反应系数的阿伦尼乌斯依赖性,但是在模型中不会发生热失控。

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