基本信息

胡远  研究员/博士生导师    中国科学院力学研究所

电子邮件: yhu@imech.ac.cn

通信地址: 中国科学院力学研究所

研究领域

1.非平衡等离子体:等离子体流动不稳定性、空间电推进、EUV光刻机

2.稀薄气体动力学:高温热化学非平衡流动、临近空间飞行、超低轨空间飞行

3.数值模拟:粒子模拟(PIC,DSMC,MD)、高性能计算、多尺度建模、机器学习

招生信息

每年招收具有力学、航空航天、计算机科学与技术背景的硕博研究生2~3名,欢迎对上述研究领域感兴趣的同学加入研究团队共同学习。依据个人背景及职业规划进行培养,学业表现优秀者可推荐至欧美合作高校及研究院所进一步深造。

招生专业
080103-流体力学
082502-航空宇航推进理论与工程
070204-等离子体物理
招生方向
非平衡等离子体、稀薄气体气体动力学
先进推进技术
高性能计算

教育背景

2013-08--2018-08   University of Southern California   博士
2009-09--2012-06   中国科学院力学研究所   硕士
2005-09--2009-06   华中科技大学   学士

工作经历

   
工作简历
2019-06~现在, 中国科学院力学研究所, 项目研究员、研究员
2018-11~2019-05,RadiaSoft LLC, 研究科学家
社会兼职
2025-04-10-今,《核聚变与等离子体物理》青年编委, 委员
2024-05-28-今,《Chinese Physics B》青年编委, 委员
2024-05-28-今,《物理》青年编委, 委员
2024-05-28-今,《Chinese Physics Letters》青年编委, 委员
2024-05-28-今,《物理学报》青年编委, 委员
2020-01-01-今,中国力学学会流体力学专业委员会磁流体力学工作组, 委员

出版信息

(完整列表请见个人研究主页:https://www.researchgate.net/profile/Yuan-Hu)


1. Wensheng Zhao, Qizhen Hong, Chao Yang, Quanhua Sun, and Yuan Hu†, Collision integrals of electronically excited atoms in air plasmas: II. N–O interactions, Plasma Sources Science and Technology, 34 025019 (2025)

2. Zilin Huang, Yuan Hu†, Jinyue Geng, Chao Yang, and Quanhua Sun, Kinetic investigation of discharge performance for Xe, Kr, and Ar in a miniature ion thruster using a fast converging PIC-MCC-DSMC model, Plasma Sources Science and Technology, 33 095006 (2024)

3. Wensheng Zhao, Qizhen Hong, Chao Yang, Quanhua Sun, and Yuan Hu†, Collision integrals of electronically excited atoms in air plasmas: I. N–N and O–O interactions, Plasma Sources Science and Technology, 32 125002 (2023)

4. Yuan Hu, Zilin Huang, Yong Cao, and Quanhua Sun, Kinetic insights into thrust generation and electron transport in a magnetic nozzle, Plasma Sources Science and Technology, 30 075006 (2021)

5. Yuan Hu, Joseph Wang, and Quanhua Sun, Geometrically self-similar ion acceleration in collisionless plasma beam expansion, Plasma Sources Science and Technology, 29 125004 (2020)

6. Fei Fei†, Yuan Hu†, and Patrick Jenny, A unified stochastic particle method based on the Bhatnagar-Gross-Krook model for polyatomic gases and its combination with DSMC, Journal of Computational Physics, 471, 111640 (2022)

7. Running Hu, Jinhan Xie, Jianchun Wang, Xinliang Li, Jian Fang, Yuan Hu†, and Changping Yu†, Suppressed cascade efficiency by Hall effects in magnetohydrodynamic turbulence, Journal of Fluid Mechanics, Vol. 1019, A41 (2025)

8. Xinbin Ye, Guan Zhang, Guangshuo Wang, Yichong Chen, Yonghao Zhang, Chao Yang, Quanta Sun, Xin Lin, and Yuan Hu†, Chemical energy accommodation of atomic oxygen recombination on silica surfaces under high-temperature nonequilibrium flow environments: Insights from atomistic-scale simulations, Physics of Fluids 37, 086119 (2025),

9. Wenjin Sun, Xuhui Liu, Jun Long, Xudong Wang, Quanhua Sun, Heji Huang, Yong Li, and Yuan Hu†, Kinetic Simulation of Nozzle Flow in a Micronewton-Class Cold Gas Thruster, AIAA Journal, Vol. 62, No. 12, pp. 4533-4542 (2024)

10. Yuan Hu, Zilin Huang, Yong Cao, Quanhua Sun, Heji Huang, Chengyuan Ding, and Zhan Wang, Exploration of electron and ion thermodynamic models in laser-plasma expansion, SCIENCE CHINA Physics, Mechanics & Astronomy, Vol. 68 No. 9: 294707 (2025)