基于电动汽车加速双蒸发器热泵系统的电池冷却与座舱舒适性制冷剂流量分配研究

IF 2.7 4区 工程技术 Q3 ELECTROCHEMISTRY Journal of Electrochemical Energy Conversion and Storage Pub Date : 2022-08-17 DOI:10.1115/1.4055274
Yan Wang, Hewu Wang, Qingshan Gao, Xiaohang Zhang, Xilong Zhang, Zunmin Liu
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引用次数: 4

摘要

热泵系统采用双蒸发器进行电池冷却,并结合座舱舒适性,这是一种创新的热管理方法。可以推断,制冷剂热负荷分布会引发电池和座舱热性能的温度波动。为了在电池和座舱的热管理需求之间进行权衡,本研究提出了一种策略,以促进电池温度的降低,并以更高的优先级确保电池的热均匀性。因此,设计了一种满足电池热需求的最小流量的瞬态制冷剂流量分配方案。结果表明,在客舱热舒适性和BTM热控制方面,温度波动显著降低。它为热泵系统通过双蒸发器连接到电池和机舱的制冷剂热负荷分配策略提供了令人满意的参考。
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Refrigerant flow distribution research for battery cooling coupled with cabin comfort based on dual-evaporator heat pump system for electric vehicle acceleration
The heat pump system employed with a dual evaporator for battery cooling coupled with cabin comfort is an innovative thermal management method. It can be inferred that the refrigerant thermal load distribution can trigger temperature fluctuations for thermal performance of both battery and cabin. To trade-off between the thermal management demands of battery and cabin, this study proposed a strategy to promote the decreasing of battery temperature and to ensure battery thermal uniformity with a higher priority. Hence a transient refrigerant flow rate distribution scheme with a minimum flow rate to satisfy battery thermal demands was designed. The results showed a significant reduction in the temperature fluctuations for cabin thermal comfort and BTM thermal controlling. It offers a satisfactory reference for refrigerant thermal load distribution strategy applied with the heat pump system connected to the battery and cabin by the dual evaporator.
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来源期刊
CiteScore
4.90
自引率
4.00%
发文量
69
期刊介绍: The Journal of Electrochemical Energy Conversion and Storage focuses on processes, components, devices and systems that store and convert electrical and chemical energy. This journal publishes peer-reviewed archival scholarly articles, research papers, technical briefs, review articles, perspective articles, and special volumes. Specific areas of interest include electrochemical engineering, electrocatalysis, novel materials, analysis and design of components, devices, and systems, balance of plant, novel numerical and analytical simulations, advanced materials characterization, innovative material synthesis and manufacturing methods, thermal management, reliability, durability, and damage tolerance.
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