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Exergy analysis of the thermal behavior of battery cooling processes for HEV and BEV applications

机译:HEV和BEV应用的电池冷却过程的热行为的火用分析

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This paper presents the results of a holistic exergy analysis of the cooling circuits for HEV and BEV battery cooling systems.The aim of the performed analysis is to give a proposal for the best possible thermohydraulic solution of the coolingsystem for battery units. The exergy analysis helps to detect possibilities to improve thermal processes and systems. Exergyis defined as the maximum useful work possible during a reversible process that brings the system into equilibrium with thelocal ambient parameters. The exergy analysis can help to establish a quality rating of counter-clockwise cyclic processes(e.g. air conditioning, heat pump) with a COP value smaller or even greater than 1. Using evaluation coefficients for thehierarchic exergetic analysis (efficiency, loss coefficient, significance factor and loss component), it is possible to identifythe maximum potential of each individual component and also of the total cooling system itself. New optimized conceptsfor the cooling and heating of battery units are proposed by a numerical analysis of the current cooling circuit for selectedoperation points. The final effect of the proposed solution is an increase of the vehicle cruising range, an increase of theoverall vehicle efficiency and finally—a reduction of the lifecycle costs.
机译:本文介绍了混合动力汽车和BEV电池冷却系统冷却回路的整体火用分析结果。 r n执行分析的目的是为冷却系统提供最佳的热工水力解决方案。电池组。火用分析有助于发现改进热过程和系统的可能性。火用定义为在使系统与局部环境参数达到平衡的可逆过程中可能的最大有用功。火用分析可以帮助建立COP值小于或大于1的逆时针循环过程的质量等级(例如空调,热泵)。使用评价系数进行分层的能谱分析(效率,损耗系数,显着因数和损耗成分),可以确定每个单独成分的最大潜力,以及整个冷却系统本身的最大潜力。通过对选定的 r n操作点的当前冷却回路进行数值分析,提出了用于电池组冷却和加热的新的优化概念。所提出的解决方案的最终效果是增加了车辆的续驶里程,提高了整个车辆的效率,最后是降低了生命周期成本。

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