
浏览全部资源
扫码关注微信
1.上海交通大学机械与动力工程学院 上海 200240
2. 智己汽车科技有限公司 上海 201804
施骏业,男,专职科研,博士,上海交通大学机械与动力工程学院,021-34206775,E-mail:jyshi@sjtu.edu.cn。研究方向:新能源汽车热管理系统、微通道换热器技术等。
收稿:2024-11-07,
修回:2024-12-02,
录用:2024-12-11,
网络出版:2025-09-28,
移动端阅览
王天英,李建龙,龚智方等.电动汽车低温工况下余热回收节能潜力分析[J].制冷学报,
Wang Tianying,Li Jianlong,Gong Zhifang,et al.Energy Saving Potential Analysis of Waste Heat Recovery for Electric Vehicles under Low Temperature Operating Conditions[J].Journal of Refrigeration,
王天英,李建龙,龚智方等.电动汽车低温工况下余热回收节能潜力分析[J].制冷学报, DOI:10.12465/issn.0253-4339.20241107003. CSTR: XXXXX.XX.XXX.20241107003.
Wang Tianying,Li Jianlong,Gong Zhifang,et al.Energy Saving Potential Analysis of Waste Heat Recovery for Electric Vehicles under Low Temperature Operating Conditions[J].Journal of Refrigeration, DOI:10.12465/issn.0253-4339.20241107003. CSTR: XXXXX.XX.XXX.20241107003.
随着电动汽车的普及,其热管理系统的效率直接影响车辆的能耗和续航里程。提出了一种新的集成式热管理热泵系统和配置的控制策略,并深入分析了其在低温环境下余热回收系统的性能。通过设计不同功率的实验,证实了通过六通阀控制余热回收条件的策略能够显著降低系统能耗。此外,在-7 ℃和-18 ℃环境温度下进行实车测试,配备余热回收系统的测试车辆前1 h能耗分别降低了24%和35%。余热回收系统在验证实际应用的节能潜力中,电动汽车在城市工况下续航里程提升了22.95%,高速工况下提升了37.29%。
Efficiency of their thermal management system directly affects the energy consumption and range of the vehicle with the wide popularity of electric vehicles. This article proposes a new integrated thermal management heat pump system and control strategy for configuration. The study analyzed its performance at low temperatures for waste heat recovery systems. The experiments were designed with different powers. These verified that the strategy of controlling the waste heat recovery conditions using a six-way valve can reduce the system energy consumption. In addition, the study conducted real vehicle tests at -7 ℃ and -18 ℃. The 1 h energy consumption of the test vehicles equipped with the waste heat recovery system reduced by 24% and 35%, respectively. The waste heat recovery system for verifying the energy-saving potential of the application increased the driving range of the electric vehicles by 22.95% under urban conditions and 37.29% under high-speed conditions.
HE Liange , JING Haodong , ZHANG Yan , et al . Review of thermal management system for battery electric vehicle [J]. Journal of Energy Storage , 2023 , 59 : 106443 .
李万勇 , 刘雨声 , 施骏业 , 等 . 电动汽车热泵空调系统低温制热性能及优化 [J]. 制冷学报 , 2020 , 41 ( 6 ): 31 - 39 .
LI Wanyong , LIU Yusheng , SHI Junye , et al . Low-temperature heating performance and optimization of electric vehicle heat pump air-conditioning system [J]. Journal of Refrigeration , 2020 , 41 ( 6 ): 31 - 39 .
TIE S F , TAN C W . A review of energy sources and energy management system in electric vehicles [J]. Renewable and Sustainable Energy Reviews , 2013 , 20 : 82 - 102 .
QI Zhaogang . Advances on air conditioning and heat pump system in electric vehicles-a review [J]. Renewable and Sustainable Energy Reviews , 2014 , 38 : 754 - 764 .
WAWZYNIAK M , WIEBELT A . Thermal management for electrified vehicles [J]. MTZ Worldwide , 2016 , 77 ( 5 ): 38 - 43 .
BAGHERI S , HUANG Y , WALKER P D , et al . Strategies for improving the emission performance of hybrid electric vehicles [J]. Science of the Total Environment , 2021 , 771 : 144901 .
CHIU C C , TSAI N C , LIN Chunchi . Near-optimal order-reduced control for A/C (air-conditioning) system of EVs (electric vehicles) [J]. Energy , 2014 , 66 : 342 - 353 .
KAUSTHUBHARAM , KOORATA P K , PANCHAL S , et al . Combined influence of concentration-dependent properties, local deformation and boundary confinement on the migration of Li-ions in low-expansion electrode particle during lithiation [J]. Journal of Energy Storage , 2022 , 52 : 104908 .
YOKOYAMA A , OSAKA T , IMANISHI Y , et al . Thermal management system for electric vehicles [J]. SAE International Journal of Materials and Manufacturing , 4 ( 1 ): 1277 - 1285 .
WANG Yueqi , DAN Dan , ZHANG Yangjun , et al . A novel heat dissipation structure based on flat heat pipe for battery thermal management system [J]. International Journal of Energy Research , 2022 , 46 ( 11 ): 15961 - 15980 .
何家文 , 张欣 , 李欣林 , 等 . 纯电动乘用车电驱动系统余热回收特性研究 [J]. 汽车工程学报 , 2024 , 14 ( 5 ): 848 - 857 .
HE Jiawen , ZHANG Xin , LI Xinlin , et al . Characterization of waste heat recovery in electric drive system of battery electric passenger vehicle [J]. Chinese Journal of Automotive Engineering , 2024 , 14 ( 5 ): 848 - 857 .
HONG J , SONG J , HAN U , et al . Performance investigation of electric vehicle thermal management system with thermal energy storage and waste heat recovery systems [J]. eTransportation , 2024 , 20 : 100317 .
GUO Rong , LI Lu , SUN Ziyi , et al . An integrated thermal management strategy for cabin and battery heating in range-extended electric vehicles under low-temperature conditions [J]. Applied Thermal Engineering , 2023 , 228 : 120502 .
于天蝉 , 石文星 , 李先庭 , 等 . 电动汽车热泵空调系统冬季运行策略研究 [J]. 制冷学报 , 2023 , 44 ( 4 ): 75 - 84 .
YU Tianchan , SHI Wenxing , LI Xianting , et al . Operation strategy of heat pump air conditioning system for electric vehicles in winter [J]. Journal of Refrigeration , 2023 , 44 ( 4 ): 75 - 84 .
HE Liange , JING Haodong , ZHANG Yan , et al . Performance research of integrated thermal management system for battery electric vehicles with motor waste heat recovery [J]. Journal of Energy Storage , 2024 , 84 : 110893 .
HU Zhiwei , QIU Doudou , ZHAO Jun , et al . Integrated design of multi-circuit thermal management system with battery waste heat utilization for new energy vehicle and performance assessment [J]. Energy Conversion and Management , 2024 , 312 : 118566 .
HEMMATI S , DOSHI N , HANOVER D , et al . Integrated cabin heating and powertrain thermal energy management for a connected hybrid electric vehicle [J]. Applied Energy , 2021 , 283 : 116353 .
LI Kang , CHEN Hongming , XIA Dingyu , et al . Assessment method of the integrated thermal management system for electric vehicles with related experimental validation [J]. Energy Conversion and Management , 2023 , 276 : 116571 .
LI Dongjun , ZHANG Caizhi , FAN Ruijia , et al . An innovative thermal management method for cooling loop of electric driving system for durable and high efficiency electric vehicle [J]. Applied Thermal Engineering , 2021 , 195 : 117176 .
MA Jing , SUN Yongfei , ZHANG Shiang . Experimental investigation on energy consumption of power battery integrated thermal management system [J]. Energy , 2023 , 270 : 126860 .
ZHANG Zhenying , WANG Jiayu , FENG Xu , et al . The solutions to electric vehicle air conditioning systems: a review [J]. Renewable and Sustainable Energy Reviews , 2018 , 91 : 443 - 463 .
0
浏览量
223
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621