潘家营 教授 博士 天津市 研究领域: 储能 研究方向: 1、电池系统热管理 2、发动机湍流燃烧 3、碳中和燃料储能 4、氨氢融合智能化 所在单位: 天津大学

基本信息

所在单位:
天津大学
机构细分:
能源学院
单位类型:
高等院校
职务:
教授
职称:
教授
最高学历:
博士
教育经历:
2012年9月 至 2016年1月 天津大学动力机械及工程专业(博士) 导师:舒歌群 教授

2010年9月 至 2012年8月 天津大学动力机械及工程专业(硕士) 导师:卫海桥 教授

2006年9月 至 2010年7月 山东理工大学热能与动力工程专业(学士)
工作经历:
2023年6月 至 今 天津大学国家储能平台 教授

2023年6月 至 今 天津大学机械学院能源与动力工程系 教授

2022年6月 至 2023年6月 天津大学机械学院能源与动力工程系 副教授

2018年1月 至 2022年6月 天津大学机械学院能源与动力工程系 讲师

2016年1月 至 2018年1月 天津大学机械学院 博士后

科研能力

研究领域:
储能
研究方向:
1、电池系统热管理
2、发动机湍流燃烧
3、碳中和燃料储能
4、氨氢融合智能化
论文著作:
1、N Liu, Q Chen, X Lu, J Pan, H Wei, X Mao. N2O reduction with selective excitation of species by non-equilibrium plasma in an NH3/air mixture.Combustion and Flame 276, 2025, 114164.
2、J Yuan, S Wang, H Wei, G Shu, J Pan. Molecular Dynamics Insights into the Stability of Bulk Hydrogen Nanobubbles in Water and Methanol. Langmuir, 2025.
3、L Wang, X Mao, J Li, H Wei, G Shu, J Pan. A comparative study of hydrogen and methane enrichment on laminar flame propagation of ammonia. Combustion and Flame 275, 2025, 114119.
4、L Wang, X Mao, J Li, H Wei, G Shu, J Pan. Role of hydrogen enrichment in ammonia forced ignition at elevated pressures. Combustion and Flame 272, 2025, 113908.
5、J Yin, R Zhang, L Wang, Z Lian, H Wei, J Pan. On dynamics of flash boiling bubbles within liquid ammonia systems. Physics of Fluids 36 (12), 2024.
6、X Wang, J Pan, H Wei, W Li, J Zhao, Z Hu. H-assisted CO 2 dissociation on Pd n Pt (4− n)/In 2 O 3 catalysts: a density functional theory study. Physical Chemistry Chemical Physics 26 (35), 2024, 23116-23124.
7、J Li, G Shu, L Wang, H Wei, J Pan. An experimental investigation on hydrogen jet ignition of ammonia: Emphasis on reactivity stratification. Proceedings of the Combustion Institute 40 (1-4), 2024, 105328.
8、N Liu, Q Chen, X Jiang, J Chen, L Zhang, J Pan, H Wei, X Mao.Three-stage hybrid NSD/DC plasma assisted n-C5H12/O2/N2 ignition: Improved energy efficiency and reduced NOx/N2O emissions. Proceedings of the Combustion Institute 40 (1-4), 2024, 105449.
9、J Pan, L Wang, D Yi, W Liang, CK Law, H Wei. Identification of multi-regime detonation development for hydrocarbon fuels. Combustion and Flame 255, 2023, 112864.
10、L Wang, J Pan, H Wei, G Shu. Thermal and chemical effects of low-temperature chemistry on flame initiation and propagation. Combustion and Flame 253, 2023,112779.
11、S Zhu, Q Xu, R Tang, J Gao, Z Wang, J Pan, D Zhang. A comparative study of oxidation of pure ammonia and ammonia/dimethyl ether mixtures in a jet-stirred reactor using SVUV-PIMS. Combustion and Flame 250, 2023, 112643.
12、J Pan, L Wang, W Liang, CK Law, H Wei, G Shu. Multi-regime reaction front and detonation initiation by temperature inhomogeneity. Proceedings of the combustion institute 39 (4), 2023, 4929-4937.
13、J Pan, R Tang, Z Wang, J Gao, Q Xu, G Shu, H Wei. An experimental and modeling study on the oxidation of ammonia and n-heptane with JSR. Proceedings of the Combustion Institute 39 (1), 2023, 477-485.
14、J Pan, Y He, L Wang, T Li, H Wei, G Shu. Effects of thermal stratification and turbulent intensity on auto-ignition and combustion mode transition. Combustion and Flame 244, 2022, 112273.
15、X Wang, J Pan, H Wei, W Li, J Zhao, Z Hu. Mechanism of Methanol Synthesis from CO2 Hydrogenation over Pt8/In2O3 Catalysts: A Combined Study on Density Functional Theory and Microkinetic Modeling. The Journal of Physical Chemistry C 126 (4), 2022, 1761-1769.
16、X Wang, J Pan, H Wei, W Li, J Zhao, Z Hu. CO2 activation and dissociation on In2O3 (110) supported PdnPt(4−n)(n=0–4) catalysts: a density functional theory study. Physical Chemistry Chemical Physics 23 (19), 2021, 11557-11567.
17、J Pan, Z Zheng, H Wei, M Pan, G Shu, X Liang. An experimental investigation on pre-ignition phenomena: Emphasis on the role of turbulence. Proceedings of the Combustion Institute 38 (4), 2021, 5801-5810.
18、J Zhao, L Zhou, K Li, X Zhang, J Pan, R Chen, H Wei. Effect of diluent gases on end-gas autoignition and combustion modes in a confined space. Combustion and Flame 222, 2020, 48-60.
19、J Zhao, L Zhou, L Zhong, X Zhang, J Pan, R Chen, H Wei. Experimental investigation of the stochastic nature of end-gas autoignition with detonation development in confined combustion chamber. Combustion and Flame 210, 2019, 324-338.
20、J Pan, S Dong, H Wei, T Li, G Shu, L Zhou. Temperature gradient induced detonation development inside and outside a hotspot for different fuels. Combustion and Flame 205, 2019, 269-277.
21、H Wei, X Zhang, H Zeng, R Deiterding, J Pan, L Zhou. Mechanism of end-gas autoignition induced by flame-pressure interactions in confined space. Physics of Fluids 31 (7), 2019.
22、H Wei, J Zhao, X Zhang, J Pan, J Hua, L Zhou. Turbulent flame–shock interaction inducing end-gas autoignition in a confined space. Combustion and Flame 204, 2019, 137-141.
23、J Pan, Z Hu, H Wei, M Pan, X Liang, G Shu, L Zhou. Understanding strong knocking mechanism through high-strength optical rapid compression machines. Combustion and Flame 202, 2019, 1-15.
24、J Pan, H Wei, G Shu, R Chen. Effect of pressure wave disturbance on auto-ignition mode transition and knocking intensity under enclosed conditions. Combustion and Flame 185, 2017, 63-74.
25、J Pan, H Wei, G Shu, Z Chen, P Zhao. The role of low temperature chemistry in combustion mode development under elevated pressures. Combustion and Flame 174, 2016, 179-193.
26、J Pan, G Shu, P Zhao, H Wei, Z Chen. Interactions of flame propagation, auto-ignition and pressure wave during knocking combustion. Combustion and Flame 164, 2016, 319-328.
科研项目:
1、国家自然科学基金(交叉学部专项课题任务): 氨氢融合零碳多源混动系统基础研究,T2341001,2023.01-2025.12,100万元,主持。
2、国家自然科学基金(优秀青年科学基金项目): 内燃机宽工况燃烧机理与调控,52222604,2023.01-2025.12,200万元,主持。
3、国家重点研发计划(政府间国际创新合作重点专项子课题):提高中载及重载卡车能效关键技术中美联合研究,2022YFE0100100,2018.01-2022.12,60万元,主持。
4、国家自然科学基金(面上项目):高海拔复杂燃烧边界条件下高强化柴油机爆震形成机理及调控,52076149,2021.01-2024.12,58万元,主持。
5、国家自然科学基金(青年项目):双燃料低速船机火焰传播和局部自燃的基础研究,51706152,2018.01-2020.12,24万元,主持。
6、校企联合基金:点燃式气体发动机各缸爆压一致性优化的试验研究,2019.05-2021.01,85万元,主持。
7、国家自然科学基金(重大研究计划重点项目):封闭空间内压力突变-湍流燃烧相互作用机理,91641203,2017.01-2020.12,240万元,项目骨干。
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