JN江南·(官方)官网入口-江南 SPORTS

机电工程与自动化学院
School of Mechatronic Engineering and Automation

张文灿 副教授

学历学位:博士研究生

导师类别:硕士生导师

研究方向:新能源汽车,新型储能技术,锂离子电池系统状态估计与安全,多场多尺度数值计算,深度学习与数据驱动

联系方式:zwencan@fosu.edu.cn / 18665718873

学习与工作经历

2001.09--2005.07 西南交通大学应用力学与工程系工程力学专业学习,获工学学士学位
2007.09--2013.09 华南理工大学机械与汽车工程学院车辆工程专业学习,获工学博士学位
2013.09--2017.12 佛山科学技术学院机电工程学院,专任教师(期间:2017.01评为副教授)
2017.12—2020.06 佛山科学技术学院机电工程学院副院长
2020.06-- 佛山科学技术学院机电工程与自动化学院,专任教师

科研项目

[1] 国家自然科学青年基金项目,LCM与CFD耦合算法研究及其在汽车乘坐热舒适性分析中的应用,主持
[1] 广东省自然科学基金项目,动力电池组荷电状态对热失控蔓延的影响机制及快速放电策略研究,主持
[2] 广东科技计划项目,汽车乘坐空间空气污染特性及防治措施研究,主持
[3] 广东省研究生教育创新计划项目,“粤港澳大湾区”背景下地方院校机械工程硕士研究生培养模式研究(2019JGXM98),主持
[4] 企业委托课题,陶瓷卫浴生产浆料、釉料供应系统监测与控制,主持
[5] 广东省高校省级特色创新项目,基于固液相变传热介质的被动式汽车动力电池热管理系统关键技术研究,主持
[6] 高校教师特色创新研究项目,应用于陶瓷卫浴生产全流程的AGV物流车动力电池热管理系统研发,主持
[7] 企业委托课题,电动汽车电池风险预警算法项目,主持

论文成果

[1] Wencan Zhang (张文灿), Nan Ouyang, Xiuxing Yin, Xingyao Li, Weixiong Wu, Liansheng Huang. Data-driven early warning strategy for thermal runaway propagation in Lithium-ion battery modules with variable state of charge [J]. Applied Energy, 2022, 119614. (IF: 11.4, 一区TOP)
[2] Wencan Zhang (张文灿), Liansheng Huang, Zhongbo Zhang, et al. Non-uniform phase change material strategy for directional mitigation of battery thermal runaway propagation [J]. Renewable Energy, 2022(200): 1338-1351. (IF: 8.63, 一区TOP)
[3] Nan Ouyang, Wencan Zhang (张文灿), Xiuxing Yin, et al. A data-driven method for predicting thermal runaway propagation of battery modules considering uncertain conditions [J]. Energy, 2023 (273): 127168. (IF: 8.86,一区TOP )
[4] ZHANG W (张文灿), QIU J, YIN X, et al. A novel heat pipe assisted separation type battery thermal management system based on phase change material [J]. Applied Thermal Engineering, 2020, 114571. (IF: 6.47,二区TOP,入选ESI工程学科高被引论文)
[5] ZHANG W (张文灿), LIANG Z, WU W, et al. Design and optimization of a hybrid battery thermal management system for electric vehicle based on surrogate model [J]. International Journal of Heat and Mass Transfer, 2021, 121318. (IF: 5.431,一区TOP)
[6] ZHANG W (张文灿), LIANG Z, YIN X, et al. Avoiding thermal runaway propagation of lithium-ion battery modules by using hybrid phase change material and liquid cooling [J]. Applied Thermal Engineering, 2021, 116380. (IF: 6.47,二区TOP,入选ESI工程学科高被引论文)
[7] WENCAN Z (张文灿), ZHICHENG L, GUOZHI L, et al. Influence of phase change material dosage on the heat dissipation performance of the battery thermal management system [J]. Journal of Energy Storage, 2021, 102849. (IF: 8.91,二区)
[8] Wencan Zhang (张文灿), Xingyao Li, Weixiong Wu, Jianfeng Huang. Influence of mechanical vibration on composite phase change material based thermal management system for lithium-ion battery [J]. Journal of Energy Storage, 2022, 105237. (IF: 8.91,二区)
[9] ZHANG W (张文灿), LING G, ZHUANG L, et al. The effect of reducing the thermal contact resistance on the performance of battery thermal management system [J]. International Journal of Energy Research, 2021, 45(7): 9970-9982. (IF: 4.672,二区TOP)
[10] ZHANG W (张文灿), Wan Weijian, et al. Internal temperature prediction model of the cylindrical lithium-ion battery under different cooling modes [J]. Applied Thermal Engineering, 212 (2022), 118562. (IF: 6.47,二区TOP)
[11] Wencan Zhang (张文灿), Taotao Li, Weixiong Wu, et. al. Data-driven state of health estimation in retired battery based on low and medium-frequency electrochemical impedance spectroscopy [J]. Measurement, 211 (2023), 112597. (IF: 5.13, 二区 )
[12] 张文灿,万伟健,张忠波,刘芹,欧阳楠.燃料电池汽车混合式能量管理策略分析.佛山科学技术学院学报(自然科学版),2021,39(06):1-8.
[13] Nan Wu, Xingyao Li, Nan Ouyang, Wencan Zhang (张文灿). Mini-channel liquid cooling system for large-sized lithium-ion battery packs by integrating step-allocated coolant scheme [J]. Applied Thermal Engineering, 214 (2022), 118798. (IF: 6.47,二区TOP, 通讯作者)
[14] YIN X, ZHAO X, ZHANG W (张文灿). A novel hydro-kite like energy converter for harnessing both ocean wave and current energy [J]. Energy, 2018, 158: 1204-1212. (IF: 8.86,一区TOP,通讯作者)
[15] YIN X, ZHANG W (张文灿), ZHAO X. Current status and future prospects of continuously variable speed wind turbines: A systematic review [J]. Mechanical Systems and Signal Processing, 2019, 120: 326-340. (IF: 8.934,一区TOP,通讯作者)
[16] YIN X, ZHANG W (张文灿), JIANG Z, et al. Adaptive backstepping control for maximizing marine current power generation based on uncertainty and disturbance estimation [J]. International Journal of Electrical Power & Energy Systems, 2020, 105329 (二区,通讯作者)
[17] YIN X, ZHANG W (张文灿), JIANG Z, et al. Adaptive robust integral sliding mode pitch angle control of an electro-hydraulic servo pitch system for wind turbine [J]. Mechanical Systems and Signal Processing, 2019, 105704 (IF: 8.934,一区TOP,通讯作者)
[18] LUO H, NISHIDA K, OGATA Y, et al. Microscopic characteristics of near-nozzle spray at the initial and end stages [J]. Fuel, 2021, 118953. (一区TOP,通讯作者)

专利成果

[1] 一种基于相变材料与风冷的电池检测散热装置及方法 (发明专利)
[2] 一种电池热管理系统 (发明专利)
[3] 基于相变材料板的对置双电池组 (实用新型专利)
[4] 喷雾液滴分离装置的喷雾可视化测试系统(实用新型专利)
[5] 散热装置以及电池组(实用新型专利)
[6] 一种防止热失控蔓延的电池组(实用新型专利)
[7] 一种分离式动力电池混合热管理系统(实用新型专利)
[8] 一种基于石墨烯辅助传热的电池模块散热装置(实用新型专利)
[9] 一种基于相变材料板的分离式电池散热装置(实用新型专利)
[10] 一种基于相变材料的双电池组散热装置(实用新型专利)
[11] 一种基于相变材料与泡沫铜的电池检测散热装置(实用新型专利)
[12] 一种集中散热的电池组散热装置(实用新型专利)
[13] 一种散热装置以及电池组(实用新型专利)
[14] 一种新能源汽车电池包散热装置(实用新型专利)

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