当前位置: X-MOL首页全球导师 国内导师 › 李鸿

个人简介

李鸿,男,动力工程及工程热物理学科副教授/博导,任职于能源科学与工程学院先进动力技术研究所,中国空天动力联合会电推进专委会委员,中国宇航学会电推进专委会青年委员(召集人)。讲授《航天电推进装置及结构》等本科生课程以及《等离子体物理》、《航空航天推进技术实践》等研究生课程。主要从事航天电推进理论与技术的研究;近年来聚焦在下一代超高参数霍尔电推进技术、霍尔推力器寿命评估及优化技术以及电推力器物理过程数值模拟等方面。主持及参与国家自然基金面上、重点项目,国防技术基础科研项目,国防基础科研项目、航天科技及科工集团项目等20余项;多个研究成果应用到了我国航天科技集团下属的电推进工程单位,获国家科学技术进步二等奖1项,省部级一等奖3项。 工作经历 访问学者 2012.12—2013.12 西班牙 马德里理工大学 航天工程系 讲师 2013.06—2018.12 工业大学 能源科学与工程学院 先进动力技术研究所 副教授 2019.01—今 哈尔滨工业大学 能源科学与工程学院 先进动力技术研究所 硕士生导师 2015.05—2021.04 哈尔滨工业大学 动力机械及工程学科 博士生导师 2021.05—今 哈尔滨工业大学 动力工程及工程热物理学科 教育经历 高中 1997.09—2000.07 湖北省沙市中学(原沙市三中) 工学学士 2000.09—2004.07 热能与动力工程 哈尔滨工业大学 能源科学与工程学院 工学硕士 2004.09—2006.07 动力机械及工程 哈尔滨工业大学 能源科学与工程学院 工学博士 2006.09—2011.07 动力工程及工程热物理 哈尔滨工业大学 能源科学与工程学院

研究领域

航天推进

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

Demai Zeng, Hong Li*, Jinwen Liu, Yanlin Hu, Yongjie Ding, LiqiuWei, Daren Yu. Optimization of a Long-Lifetime Hall Thruster with an Internally Mounted Cathode. AIAA Journal. 2023, 61(10): 4259-4266. https://doi.org/10.2514/1.J062246 Xingyu Liu, Hong Li*, Qiaohui Yu, Yongjie Ding, Liqiu Wei, Daren Yu, Shangmin Wang, and Yanlin Hu. On Inward Deflection of Excitation Magnetic Field in a Hall Thruster Operating at High Discharge Voltage. Vacuum 2023, 212: 112060. https://doi.org/10.1016/j.vacuum.2023.112060. Xingyu Liu, Hong Li*, Zhongkai An, Yongjie Ding, Liqiu Wei, Daren Yu, and Wei Mao. High-Voltage Discharge Characteristics of a Hybrid-Wall Hall Thruster with an Aft-Loaded Magnetic Field. Acta Astronautica 2023, 203: 214-225. https://dx.doi.org/10.1016/j.actaastro.2022.11.054. Zhaoyu Wang, Hong Li*, Yanlin Hu, Chao Zhong, Yongjie Ding, Liqiu Wei, Daren Yu. Expanding the design freedom of the chamfered wall shape of a magnetically shielded Hall thruster. Vacuum 2023, 207: 111603. https://doi.org/10.1016/j.vacuum.2022.111603 Chao Zhong, Hong Li*, Yanlin Hu, Zhaoyu Wang, Yongjie Ding, Liqiu Wei, and Daren Yu. Radial Position Effects of Externally Mounted Hollow Cathode on a Magnetically Shielded Hall Thruster. Applied Physics Letters 2022, 121(26): 264101. https://doi.org/10.1063/5.0129741. Xingyu Liu, Hong Li*, Junbo Tang, Yongjie Ding, Liqiu Wei, Daren Yu, and Yanlin Hu. Method for Calculating Thrust Vector Eccentricity Angle of Electric Thruster. AIAA Journal 2022, 60(9): 5060-5069. https://doi.org/10.2514/1.J061328 Demai Zeng, Hong Li*, Jinwen Liu, Yongjie Ding, Liqiu Wei, Daren Yu, and Yanlin Hu. Comparison of Discharge Characteristics of a Hall Thruster with Different Cathode Arrangements. Journal of Propulsion and Power 2022, 38(4): 686-689. https://doi.org/10.2514/1.B38643. Chao Zhong, Hong Li*, Yanlin Hu, Xu Zhang, Yongjie Ding, Liqiu Wei, and Daren Yu. On Cathode Position and Inclination Angle in Magnetically Shielded Hall Thrusters. Journal of Propulsion and Power 2022, 38(2): 181-189. https://doi.org/10.2514/1.B38436. Demai Zeng, Hong Li*, Jinwen Liu, Yongjie Ding, Liqiu Wei, Daren Yu, and Wei Mao. Numerical study of the effect of aft-loaded magnetic field on multiple ionizations in Hall thruster. Plasma Science and Technology 2022, 24: 074005. https://doi.org/10.1088/2058-6272/ac5788. 刘星宇, 李鸿*, 毛威, 丁永杰, 魏立秋, 于达仁. 霍尔推力器能量损失系统性评价方法. 推进技术 2022, 43(7): 200868. https://10.13675/j.cnki. tjjs. 200868 Haotian Fan, Hong Li*, Wei Mao, Yongjie Ding, Liqiu Wei, and Daren Yu. Improving the Hall Thruster Global Efficiency over a Wide Flow-Rate Range. Journal of Propulsion and Power 2021, 37(4): 625-33. https://doi.org/10.2514/1.B38208. Minghao Ding, Hong Li*, Yongjie Ding, Liqiu Wei, Wei Mao, Liang Han, and Daren Yu. Effect of Disruption of Anode Potential Symmetrical Supply on Hall Thruster Discharge. Physics of Plasmas 2021, 28(3): 033501. https://doi.org/10.1063/5.0041994. Minghao Ding, Hong Li*, Yongjie Ding, Liqiu Wei, Wei Mao, Daren Yu, and Yong Cao. Performance and Plume Characteristics of a Hall-Effect Thruster with Asymmetrical Gas Supply. Vacuum 2021, 190: 110285. https://doi.org/10.1016/j.vacuum.2021.110285. Zhaoyu Wang, Hong Li*, Chao Zhong, Jinwen Liu, Yongjie Ding, Liqiu Wei, and Daren Yu. Simulation of Pole Erosion in Magnetically Shielded and Unshielded Hall Thrusters. IEEE Transactions on Plasma Science 2021, 49(4): 1351-56. https://doi.org/10.1109/tps.2021.3064891. Zhaoyu Wang, Hong Li*, Chao Zhong, Yanlin Hu, Yongjie Ding, Liqiu Wei, and Daren Yu. Matching Characteristics of Magnetic Field Configuration and Chamfered Channel Wall in a Magnetically Shielded Hall Thruster. Plasma Science and Technology 2021, 23(10): 104008. https://doi.org/10.1088/2058-6272/ac2121. Haotian Fan, Hong Li*, Yongjie Ding, Liqiu Wei, and Daren Yu. Effects of the Peak Magnetic Field Position on Hall Thruster Discharge Characteristics. Advances in Space Research 2020, 66(8): 2024-34. https://doi.org/10.1016/j.asr.2020.06.036. Hong Li, Shengyi Hu, Demai Zeng, Yongjie Ding*, Liqiu Wei, Daren Yu, and Zhiyong Gao. Numerical Simulation of the Effect of Backpressure on the Discharge Characteristics of a Hall Effect Thruster. The European Physical Journal D 2020, 74(2): 29. https://doi.org/10.1140/epjd/e2019-100331-7. Jinwen Liu, Chao Zhong, Hong Li*, Yongjie Ding, Liqiu Wei, and Daren Yu. The Influence of the Inclination of Strong Magnetic Field Lines on the Performance and Plume Divergence of a Magnetically Shielded Hall Thruster. Journal of Physics D: Applied Physics 2020, 53(24): 245201. https://doi.org/10.1088/1361-6463/ab79db. Hongbo Su, Hong Li*, Yongjie Ding*, Liqiu Wei, Xu Zhang, Chaoying Zhou, and Daren Yu. Simulation Study on the Influence of Magnetic Field in the near-Anode Region on Anode Power Deposition of Aton-Type Hall Thruster. Plasma Science and Technology 2020, 22(9): 094013. https://doi.org/10.1088/2058-6272/aba188. Guojun Xia, Hong Li*, Yongjie Ding, Liqiu Wei, Shaowen Chen, and Daren Yu. Performance Optimization of a Krypton Hall Thruster with a Rotating Propellant Supply. Acta Astronautica 2020, 171: 290-99. https://doi.org/10.1016/j.actaastro.2020.03.021. Guojun Xia, Hong Li*, Ximing Zhu, Zhongxi Ning, Shaowen Chen, Daren Yu, and Chaoying Zhou. Effects of Rotating Supply Mode on the Ionization Parameters of a Krypton Hall Thruster. Vacuum 2020, 181: 109664. https://doi.org/10.1016/j.vacuum.2020.109664. Guojun Xia, Xingyu Liu, Hong Li*, Yongjie Ding*, Liqiu Wei, Shaowen Chen, and Daren Yu. Performance Improvement of Hall Thrusters with High Discharge Voltage. Vacuum 2020, 172: 109052. https://doi.org/10.1016/j.vacuum.2019.109052. Minghao Ding, Hong Li*, Yongjie Ding*, Hui Liu, Daren Yu, and Xiaogang Wang. Experimental Study of the Effect of Propellant Asymmetrical Distribution on Anode Current in a Hall Effect Thruster. Physics Letters A 2019, 383: 3108-13. https://doi.org/10.1016/j.physleta.2019.07.008. Yongjie Ding, Hongbo Su, Hong Li*, Boyang Jia, Liqiu Wei*, Wuji Peng, Yanlin Hu, Wei Mao, and Daren Yu. Measurement Method for Plume Divergence Angle of Hall Thrusters. Journal of Vacuum Science & Technology B 2019, 37(1): 012902. https://doi.org/10.1116/1.5037440. Yongjie Ding, Lei Wang, Haotian Fan, Hong Li*, Weifeng Xu, Liqiu Wei, Peng Li, and Daren Yu. Simulation Research on Magnetic Pole Erosion of Hall Thrusters. Physics of Plasmas 2019, 26(2): 023520. https://doi.org/10.1063/1.5077041. Hong Li, Yongjie Ding*, Lei Wang, Haotian Fan, Peng Li, Liqiu Wei, and Daren Yu. Effect of Magnetic-Field Intensity near an Intermediate Electrode on the Discharge Characteristics of a Hall Thruster with a Double-Peaked Magnetic Field. The European Physical Journal D 2019, 73(9): 198. https://doi.org/10.1140/epjd/e2019-100162-6. Hong Li, Haotian Fan, Xingyu Liu, Minghao Ding, Yongjie Ding*, Liqiu Wei, Daren Yu, and Xiaogang Wang. Effect of Magnetic Field Configuration on Discharge Characteristic of a Hall Effect Thruster with a Variable Channel. Vacuum 2019, 162: 78-84. https://doi.org/10.1016/j.vacuum.2019.01.036. Jinwen Liu, Hong Li*, Yanlin Hu, Xingyu Liu, Yongjie Ding*, Liqiu Wei, Daren Yu, and Xiaogang Wang. Particle-in-Cell Simulation of the Effect of Curved Magnetic Field on Wall Bombardment and Erosion in a Hall Thruster. Contributions to Plasma Physics 2019, 59(8): e201800001. https://doi.org/10.1002/ctpp.201800001. Yongjie Ding, Hongbo Su, Boyang Jia, Hong Li*, Liqiu Wei*, Peng Li, Hezhi Sun, and Daren Yu. Comparative Study of Annular–Cylindrical Combined Channel with Annular Channel Hall Thruster. IEEE Transactions on Plasma Science 2018, 46(12): 4051-59. https://doi.org/10.1109/tps.2018.2866336. Yongjie Ding, Hongbo Su, Boyang Jia, Hong Li*, Liqiu Wei*, Peng Li, Hezhi Sun, and Daren Yu. Effects of Annular-Cylindrical Combined Channel Hall Thruster Length on the Discharge Characteristics. Journal of Vacuum Science & Technology B 2018, 36(6): 062601. https://doi.org/10.1116/1.5037740. Hong Li, Xingyu Liu, Zhiyong Gao, Yongjie Ding*, Liqiu Wei, Daren Yu, and Xiaogang Wang. Particle-in-Cell Simulation for Effect of Anode Temperature on Discharge Characteristics of a Hall Effect Thruster. Plasma Science and Technology 2018, 20(12): 125504. https://doi.org/10.1088/2058-6272/aaddf2. Hong Li, You Wu, Minghao Ding, Yongjie Ding*, Liqiu Wei, Daren Yu*, and Xiaogang Wang. Discharge Characteristics of a Kilowatt Hall Effect Thruster with a Variable Channel. Vacuum 2018, 153: 291-99. https://doi.org/10.1016/j.vacuum.2018.04.035. Hong Li*, Guojun Xia, Wei Mao, Jinwen Liu, Yongjie Ding*, Daren Yu, and Xiaogang Wang. Experimental and Numerical Investigation of a Hall Thruster with a Chamfered Channel Wall. Chinese Physics B 2018, 27(10): 105209. https://doi.org/10.1088/1674-1056/27/10/105209. Jinwen Liu, Hong Li*, Wei Mao, Yongjie Ding*, Liqiu Wei, Jianzhi Li, Daren Yu, and Xiaogang Wang. Experimental Study of Effect of Magnetic Field on Anode Temperature Distribution in an Aton-Type Hall Thruster. Journal of Physics D: Applied Physics 2018, 51(8): 185201. https://doi.org/10.1088/1361-6463/aab8f1. Jinwen Liu, Hong Li*, Xu Zhang, Yongjie Ding*, Liqiu Wei, Jianzhi Li, Daren Yu, and Xiaogang Wang. On Matching the Anode Ring with the Magnetic Field in an Aton-Type Hall Effect Thruster. Journal of Applied Physics 2018, 123(22): 223301. https://doi.org/10.1063/1.5026486. 李鸿*, 吴优, 张兴浩, 韩亮, 于达仁. 磁路温度对霍尔推力器放电热稳定性的影响. 推进技术 2018, 39(1): 231-40. https://doi.org/10.13675/j.

推荐链接
down
wechat
bug