侯凌云 研究科学家系列研究员 博士生导师 十大充值折扣平台人才培养办主任
邮箱: lyhou@tsinghua.edu.cn
地址: :榫杭甲闱蚓憷植棵擅裎翱萍即舐305
座机: 010-62772157
教育背景
1993~1998:西北工业大学 航空宇航推进理论与工程 博士
1989~1993:西北工业大学 航空宇航推进理论与工程 本科
工作履历
2019-至今 十大充值折扣平台 研究科学家系列研究员 博导
2017-2019 :榫杭甲闱蚓憷植亢教旌娇昭г 教研系列长聘副教授 博导
2002-2017 :榫杭甲闱蚓憷植亢教旌娇昭г 副教授
2000-2002 :榫杭甲闱蚓憷植抗こ塘ρ 讲师
1998-2000 :榫杭甲闱蚓憷植抗こ塘ρ 博士后
2008-2009 德国斯图加特大学 访问学者
学术兼职
航空动力学报编委
中国宇航学会电推进专业委员会委员
航空学会动力分会委员
研究领域
航空发动机点火与燃烧
发动机主动热防护与燃油冷却
燃料特性与结焦机理
超声速湍流燃烧及掺混
新型宽速域组合动力与电推进
学术成果
1. LY Hou*, PF Fu, YT Ba, Chemical Mechanism of MMH/NTO and Simulation in a Small Liquid Rocket Engine, Combustion Science and Technology, 2019, 191(12): 2208-2225
2. DR Zhang , LY Hou* , JL Huo , J Liu , ZY Ren, Investigation of the Composition and Laminar Flame Speed of Pyrolysis Gases. Journal of Propulsion and Power, 2019, 35(6): 1065-1072
3. MY Gao,LY Hou*, XX Zhang,DR Zhang. Coke Deposition Inhibition for Endothermic Hydrocarbon Fuels in a Reforming Catalyst-Coated Reactor. Energy & Fuels, 2019, 33(7): 6126-6133
4. PF Fu, LY Hou*, Z Zhang, XF Mao, YS Yu. A Droplet/Wall Impact Model and Simulation of a Bipropellant Rocket Engine. Aerospace Science and Technology, 2019, 88: 32-39
5. LH Kong, ZY Ren, LY Hou*. Modeling Turbulent Transport Effects on Kernel Formation and Flame Propagation in Ignition Process. Chinese Journal of Aeronautics, 2019, 32(4): 895-905
6. DR Zhang, LY Hou*, XX Zhang, MY Gao. Experiment and Modeling on Thermal Cracking of n-Dodecane under Supercritical Pressure. Energy & Fuels, 2018, 32(12):12426-12434
7. XY Pei, LY Hou*, WL Roberts. Experimental and numerical study on oxidation deposition properties of aviation kerosene. Energy & Fuels, 2018, 32(7): 7444-7450
8. XY Pei, LY Hou*, ZY Ren. Kinetic Modeling of Thermal Oxidation and Coking Deposition in Aviation Fuel. Energy & Fuels, 2017, 31(2):1399-1405
9. FL Fanli, LY Hou*, Z Chen, J Chen, L Wang. Linearized Correction to Flamelet/Progress Variable Model for Supersonic Combustion. International Journal of Hydrogen Energy, 2017, 42(16): 11937-11944
10. LY Hou*, DR Zhang, XX Zhang. Interaction between Thermal Cracking and Steam Reforming Reactions of Hydrocarbon Fuel. Fuel Processing Technology, 2017,167C:655-662
11. XY Pei, LY Hou*. Effect of dissolved oxygen concentration on coke deposition of kerosene. Fuel Processing Technology, 2016, 142: 86–91
12. XY Pei, LY Hou*. Secondary Flow and Oxidation Coking Deposition of Aviation Fuel. Fuel, 2016, 167: 68–74
13. LY Hou*, XX Zhang, ZY Ren, Coke suppression of kerosene by wall catalytic steam reforming, Fuel Processing Technology, 2016, 154: 117-122
14. HS Wang, FL Shan, Y Piao, LY Hou*, J Niu. IDDES simulation of hydrogen-fueled scramjet combustion using flamelet modeling. International Journal of Hydrogen Energy, 2015, 40(1): 683-691
15. XY Pei, LY Hou*, ZY Ren. Flow Pattern Effects on Oxidation Deposition Rate of Aviation Kerosene. Energy & Fuels, 2015, 29(9): 6088–6094
16. LY Hou*, DS Niu,ZY Ren. Partially premixed flamelet modeling in a hydrogen-fueled supersonic turbulent combustion. International Journal of Hydrogen Energy, 2014, 39: 9497-9504
17. LY Hou*, N Dong, ZY Ren, B Zhang, SL Hu. Cooling and Coke deposition of Hydrocarbon Fuel with Catalytic Steam Reforming. Fuel Processing Technology, 2014,128:128-133
18. XY Pei, LY Hou*. Numerical investigation on cavity structure of solid-fuel scramjet combustor. Acta Astronautica, 2014, 105(2): 463-475