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Thermal analysis and simulation of a Li-ion battery pack for a lightweight commercial EV

机译:轻型商用电动车锂离子电池组的热分析和仿真

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摘要

The scope of the present research is the reduction of cost and time related to the design, prototyping and testing of a Li-ion battery pack, which is used in commercial full electric vehicles using tools for rapid product configuration and simulation. This objective is particularly important for small companies that produce many different batteries in small lots. To develop the product design support system, a preliminary study was necessary. A 3D model was analyzed to simulate real thermal behavior, reproducing a real electric load Using a standard ECE-15 cycle. Experimental tests have been conducted on the vehicle and battery to validate the model. An analytical thermal model was developed to evaluate the heat generated by electrochemical reactions inside a Li-ion cell. The outcome of this analytical model was used as the boundary condition in the CFD simulation of the battery model to evaluate the cooling behavior. The rules and results deduced from these studies have allowed the implementation of an easy-to-use knowledge-based configuration tool that supports the designer in the definition of the layout of the battery pack to save time and evaluate costs. As a test case, the battery for an urban freight vehicle was designed using the proposed approach. The achieved results show good performance and robustness of the simplified approach in terms of temperature distribution evaluation and design process efficiency. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本研究的范围是减少与锂离子电池组的设计,原型制作和测试相关的成本和时间,该锂离子电池组用于商用全电动汽车,其工具用于快速的产品配置和仿真。对于小批量生产许多不同电池的小公司而言,这一目标尤其重要。为了开发产品设计支持系统,需要进行初步研究。分析了3D模型以模拟真实的热行为,并使用标准的ECE-15循环来复制真实的电负载。已经在车辆和电池上进行了实验测试以验证模型。建立了分析热模型来评估锂离子电池内部电化学反应产生的热量。该分析模型的结果在电池模型的CFD模拟中用作边界条件,以评估冷却性能。从这些研究中得出的规则和结果允许实施易于使用的基于知识的配置工具,该工具可帮助设计人员定义电池组的布局,以节省时间并评估成本。作为测试案例,使用建议的方法设计了用于城市货运车辆的电池。所获得的结果表明,在温度分布评估和设计过程效率方面,简化方法具有良好的性能和鲁棒性。 (C)2017 Elsevier Ltd.保留所有权利。

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