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首页> 外文期刊>Journal of power sources >Streamline three-dimensional thermal model of a lithium titanate pouch cell battery in extreme temperature conditions with module simulation
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Streamline three-dimensional thermal model of a lithium titanate pouch cell battery in extreme temperature conditions with module simulation

机译:使用模块仿真简化钛酸锂袋装电池在极端温度条件下的三维热模型

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摘要

In this paper, the development of a three-dimensional (3D) lithium titanium oxide (LTO) pouch cell is presented to first better comprehend its thermal behavior within electrified vehicle applications, but also to propose a strong modeling base for future thermal management system. Current 3D-thermal models are based on electrochemical reactions which are in need for elaborated meshing effort and long computational time. There lacks a fast electro-thermal model which can capture voltage, current and thermal distribution variation during the whole process. The proposed thermal model is a reduce-effort temperature simulation approach involving a OD-electrical model accommodating a 3D-thermal model to exclude electrochemical processes. The thermal model is based on heat-transfer theory and its temperature distribution prediction incorporates internal conduction and heat generation effect as well as convection. In addition, experimental tests are conducted to validate the model. Results show that both the heat dissipation rate and surface temperature uniformity data are in agreement with simulation results, which satisfies the application requirements for electrified vehicles. Additionally, a LTO battery pack sizing and modeling is also designed, applied and displays a non-uniformity of the cells under driving operation. Ultimately, the model will serve as a basis for the future development of a thermal strategy for LTO cells that operate in a large temperature range, which is a strong contribution to the existing body of scientific literature. (C) 2017 Elsevier B.V. All rights reserved.
机译:在本文中,提出了三维(3D)锂钛氧化物(LTO)袋式电池的开发,以首先更好地理解其在电动车辆应用中的热行为,同时也为将来的热管理系统提供了强大的建模基础。当前的3D热模型基于电化学反应,这需要详尽的网格划分工作和较长的计算时间。缺乏快速的电热模型,该模型可以捕获整个过程中的电压,电流和热分布变化。所提出的热模型是一种省力的温度模拟方法,其中包括容纳3D热模型的OD电模型,以排除电化学过程。热模型基于传热理论,其温度分布预测结合了内部传导和生热效应以及对流。另外,进行实验测试以验证模型。结果表明,散热率和表面温度均匀性数据均与仿真结果吻合,满足了电动汽车的应用要求。此外,还设计,应用了LTO电池组的尺寸和模型,并在驾驶操作下显示了电池的不均匀性。最终,该模型将为将来在较大温度范围内工作的LTO电池的热策略发展奠定基础,这对现有的科学文献做出了重大贡献。 (C)2017 Elsevier B.V.保留所有权利。

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