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Design a J-type air-based battery thermal management system through surrogate-based optimization

机译:通过基于代理的优化设计J型空气电池热管理系统

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摘要

Battery thermal management system is of great importance to the performance and safety of electric vehicles. The conventional U- and Z-type air-based structures may fail to meet the thermal requirements under changing working conditions. This paper proposes a novel J-type air-based battery thermal management system by integrating the U-type and Z-type structures. A comparative parametric study of key design variables and priori optimized structures is first conducted with a newly developed battery electro-thermal model. Based on the parametric analyses, the grouped-channel optimizations are performed using surrogate-based optimization. Results show that there are 35.3%, 46.6%, and 31.18% reduction in temperature rise for U-, Z-, and J-type, respectively. The pros and cons of the J-type structure are further explored by comparing with the optimal U- and Z-type structures. A further J-type optimization regarding the manifold configuration is also conducted to show that the optimal settings of the air-based cooling system vary across working conditions, and the J-type structure is able to be adaptively controlled to satisfy the cooling requirement. Corresponding experiments are also conducted to validate the modeling and optimization results.
机译:电池热管理系统对电动汽车的性能和安全性至关重要。在变化的工作条件下,常规的U型和Z型空气基结构可能无法满足散热要求。本文通过结合U型和Z型结构提出了一种新型的J型空气电池热管理系统。首先使用新开发的电池电热模型对关键设计变量和先验优化结构进行了比较参数研究。基于参数分析,使用基于代理的优化来执行分组通道优化。结果表明,U型,Z型和J型的温度上升分别降低了35.3%,46.6%和31.18%。通过与最佳的U型和Z型结构进行比较,进一步探讨了J型结构的优缺点。还进行了有关歧管配置的进一步J型优化,以表明基于空气的冷却系统的最佳设置会随工作条件而变化,并且能够自适应地控制J型结构以满足冷却要求。还进行了相应的实验以验证建模和优化结果。

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