一、个人简介 安周建,博士/副教授/硕士研究生导师 2022. 01-至 今:兰州理工大学,副教授; 2019. 04-2021. 12:兰州理工大学,讲师; 2013. 09-2019. 03:北京交通大学机械工程专业硕博连读,获得工学博士学位; 2009. 09-2013. 06:北京交通大学热能与动力工程专业学习,获得工学学士学位; 2017. 11-2018. 06:美国加州大学Merced分校(UC, Merced),访问学者; 二、主要研究方向 [1]锂离子动力电池热安全特性及热管理技术研究 [2]储能技术与储能材料研究 [3]高热流密度电子器件冷却技术研究 [4]航空动力系统换热装备及热管理技术研究 三、教学工作 教学课程: 本科生课程:热工基础、工程流体力学、储能技术概论、碳中和与新能源综合利用、“智能+”热管理系统创新设计方法 研究生课程:高等工程热力学、热力系统辨识与仿真 教学研究项目: [1] 2025年度兰州理工大学创新课程建设项目《“智能+”热管理系统创新设计方法》,2025.03; [2]2025年度兰州理工大学校企合作课程建设项目《热工基础》,兰州理工大学,2025.02; [3]高等学校人才培养质量提升和创新创业教育改革项目,甘肃省教育厅,2024.10; [4]兰州理工大学2024年学校高等教育研究项目,兰州理工大学,2024.07; [5]兰州理工大学混合式教学课程建设项目《热工基础》,兰州理工大学,2024.04; [6]兰州理工大学通识公选课程《碳中和与新能源综合利用》,兰州理工大学,2023.04; [7]中国高等教育博览会“校企合作 双百计划”典型案例,中国高等教育学会,2022.07; [8]教育部产学合作协同育人项目,教育部高等教育司,2021.08; [9]兰州理工大学2019年学校高等教育研究项目,兰州理工大学,2019.12. 教学获奖: [1]兰州理工大学首届研究生课程思政教学竞赛一等奖,兰州理工大学,2024.05; [2]西部联盟第一届课程思政案例大赛二等奖,西部高校课程思政建设联盟,2024.09; [3]兰州理工大学教师教学创新竞赛三等奖,兰州理工大学,2024.11; [4]兰州理工大学课程思政优秀教学案例,兰州理工大学,2024.12; [5]青年教师教学基本功竞赛二等奖,兰州理工大学,2023.11. 四、主持科研项目 [1]国家自然科学基金委员会,青年科学基金项目,52206087,2023-01至2025-12,主持; [2]中国博士后科学基金会,中国博士后科学基金第77批面上资助项目,2025-07至2027-06,主持; [3]兰州市科学技术局,青年科技人才创新项目,2024-QN-18,2025-01至2026-12,主持; [4]甘肃省科学技术厅,科技专员专项,25CXGA058,2025-02至2026-02,主持; [5]甘肃省教育厅,青年博士支持项目,2025QB-027,2025-01至2025-12,主持; [6]甘肃省科学技术厅,甘肃省重点研发计划-工业类,23YFGA0066,2023-08至2025-08,主持; [7]甘肃省科学技术厅,甘肃省青年科技基金计划,20JR10RA193,2021-02至2023-01,主持; [8]兰州理工大学,青年教师学科交叉研究培育项目,2025-07至2027-06,主持; [9]兰州理工大学,红柳优秀青年人才支持计划项目,2023-01至2025-12,主持。 五、代表性论文 2025年度: [1]安周建,李璐,毛帅,等.张东硝酸盐基中低温储热相变材料的制备及热物性调控[J].华南理工大学学报(自然科学版)2025, 53(3): 116-126. [2]An Zhoujian, Jia Ruixin, Li Qingliang, et al. Safety of LiFePO4Graphite Li-ion pouch batteries under simulated external short-circuit (high rate) conditions [J]. Journal of Power Sources 2025, 629: 236038. [3]Shi Tianlu,An Zhoujian*, Du Xiaoze, et al. Experimental study on the degradation characteristics and mechanism of lithium-ion batteries under mild mechanical deformation [J]. Journal of Energy Storage, 2025, 108: 115097. [4] MAO Shuai,AN Zhoujian*, DU Xiaoze, et al. Collaborative Improvement on Thermo-Physical Properties of Ternary Carbonate Nanocomposites for Thermal Energy Storage in Concentrating Solar Power Systems[J]. Journal of Thermal Science,2025, 34(4): 1162-1176. [5] Mombeki Pea Hamir Johan,An Zhoujian*, Du Xiaoze, et al. Investigation and application of expanded graphite/epoxy resin/high-density polyethylene synergy for enhancing the fire safety and mechanical stability of paraffin [J] Thermochimica Acta 2025, 752: 180100. [6] An Zhoujian, Wang Linhui, DU Xiaoze, et al. The influence of external short-circuit durations on the performance and thermal runaway risk of lithium-ion battery under critical C-rate conditions[J]. Journal of Energy Storage, 2025. [7] An Zhoujian, MA Jin, DU Xiaoze, et al. Attention-Based Bidirectional LSTM Model Construction and Application for Lithium-ion Battery State-of-Health Prediction[J]. Ionics, 2025. 2024年度: [1]安周建,安娴,杜小泽,等.锂离子电池外部短路热失控失效特征及机理[J].工程热物理学报, 2024, 45(19): 2742-2749. [2]Mombeki Pea Hamir Johan,An Zhoujian*,Du Xiaoze, et al. Experimental and analytical studies on latent heat of hydrated salt/modified EG-based form-stable composite PCMs for energy storage application [J]. Renewable Energy, 2024, 222: 119978. [3]Mombeki Pea Hamir Johan,An Zhoujian*, Du Xiaoze, et al. Epoxy resin/ aluminium hydroxide/expanded graphite synergistic effects on advancing flame retardancy, mechanical structure and thermal management of octadecanoic acid and octadecanol-based eutectic phase change materials [J]. Chemical Engineering Journal, 2024, 490: 151558. [4]An Zhoujian, Yao Minchao, Du Xiaoze, et al. Influence of external operating parameters on the hydrothermal transport and performance in proton exchange membrane water electrolyzer [J]. Ionics, 2024, 30(10): 6253-6266. [5]An Zhoujian, Shi Tianlu, Du Xiaoze, et al. Experimental study on the internal short circuit and failure mechanism of lithium-ion batteries under mechanical abuse conditions [J]. Journal of Energy Storage, 2024, 89: 111819. [6]An Zhoujian, Mao Shuai, Du Xiaoze, et al. Theoretical prediction and experiment study on the thermo-physical properties of ternary carbonate for energy storage [J]. Thermochimica Acta, 2024, 732: 179663. [7]An Zhoujian, Li Wenda, Du Xiaoze, et al. Experimental study on behaviors of lithium-ion cells experiencing internal short circuit and thermal runaway under nail penetration abuse condition [J]. Applied Thermal Engineering, 2024, 247: 123058. [8]An Zhoujian, Hou Wenjie, Du Xiaoze, et al. Thermal Property Enhancement of a Novel Shape-Stabilized Sodium Acetate Trihydrate-Acetamide/Expanded Graphite-Based Composite Phase Change Material [J]. Journal of Thermal Science, 2024, 33(4): 1564-1576. 2023年度: [1]Shi Tianlu,An Zhoujian*, Du Xiaoze, et al. Performance Analysis of an Innovative PCM-Based Internal Cooling Design for Cylindrical Lithium-Ion Battery Considering Compact Structure and Uniform Temperature [J]. Journal of Energy Engineering, 2023, 149(3): 04023006. [2]Mombeki Pea Hamir Johan,An Zhoujian*, Du Xiaoze, et al. Structure, Characterization and Thermal Properties of the Form-Stable Paraffin/High-Density Polyethylene/Expanded Graphite/Epoxy Resin Composite PCMs for Thermal Energy Storage [J]. Journal of Thermal Science, 2023, 32(6): 2104-2114. [3]An Zhoujian, Zhao Yabing, Du Xiaoze, et al. Experimental research on thermal-electrical behavior and mechanism during external short circuit for LiFePO4 Li-ion battery [J]. Applied Energy, 2023, 332: 120519. [4]An Zhoujian, Shi Tianlu, Zhao Yabing, et al. Study on aging and external short circuit mechanisms of Li-ion cells with different electrode thicknesses [J]. Applied Energy, 2023, 350: 121796. [5]An Zhoujian, Jian Binghao, Du Xiaoze, et al. Study on performance optimization of proton exchange membrane fuel cell with porous ridge flow channel [J]. Ionics, 2023, 29(10): 4099-4113. 六、授权专利 发明专利: [1]一种基于热管冷却的圆柱形锂电池单体及电池组,201910727345.X; 实用新型专利: [1]便于多信号监测的软包锂离子电池测试装置,202420705020.8; [2]一种智能锂电池热失控自动预警及灭火抑制系统,202421389490.4; [3]三元碳酸盐的制备用研磨装置,202421037464.5; [4]一种用于土壤单向冻结水汽迁移的试验系统,202223324553.1; [5]一种具有电芯自循环散热系统的单体电池及电池组,202220704604.4; [6]一种基于热管冷却的圆柱形锂电池单体及电池组,201921271803.5; [7]一种基于热管冷却的电机,202020704177.0. |