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On-board monitoring of 2-D spatially-resolved temperatures in cylindrical lithium-ion batteries: Part I. Low-order thermal modelling

机译:圆柱形锂离子电池中二维空间分辨温度的车载监控:第一部分:低阶热模型

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摘要

Estimating the temperature distribution within Li-ion batteries during operation is critical for safety and control purposes. Although existing control-oriented thermal models - such as thermal equivalent circuits (TEC) - are computationally efficient, they only predict average temperatures, and are unable to predict the spatially resolved temperature distribution throughout the cell. We present a low-order 2D thermal model of a cylindrical battery based on a Chebyshev spectral-Galerkin (SG) method, capable of predicting the full temperature distribution with a similar efficiency to a TEC. The model accounts for transient heat generation, anisotropic heat conduction, and non-homogeneous convection boundary conditions. The accuracy of the model is validated through comparison with finite element simulations, which show that the 2-D temperature field (r, z) of a large format (64 mm diameter) cell can be accurately modelled with as few as 4 states. Furthermore, the performance of the model for a range of Biot numbers is investigated via frequency analysis. For larger cells or highly transient thermal dynamics, the model order can be increased for improved accuracy. The incorporation of this model in a state estimation scheme with experimental validation against thermocouple measurements is presented in the companion contribution (Part II).
机译:对于安全和控制目的,估算运行期间锂离子电池内的温度分布至关重要。尽管现有的面向控制的热模型(如热等效电路(TEC))在计算上很有效,但它们只能预测平均温度,而无法预测整个电池的空间分辨温度分布。我们提出了一种基于Chebyshev谱-Galerkin(SG)方法的圆柱形电池的低阶2D热模型,该模型能够以与TEC相似的效率预测整个温度分布。该模型考虑了瞬态热生成,各向异性热传导和非均匀对流边界条件。通过与有限元模拟进行比较,验证了模型的准确性,该模拟表明,大型(64毫米直径)单元的二维温度场(r,z)可以用最少4个状态进行精确建模。此外,通过频率分析研究了一系列毕奥数的模型的性能。对于较大的电池或高度瞬态的热力学,可以增加模型顺序以提高准确性。该模型在状态估计方案中的结合以及针对热电偶测量的实验验证在第二部分中进行了介绍。

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