个人详细信息
范学军

范学军

研究员
中国科学院力学研究所 高温气体动力学国家重点实验室 超声速燃烧课题组组长
邮箱:xfan@imech.ac.cn
座机:82544052
邮编:100190
地址:北京海淀区中关村北四环西路15号
个人详细信息

荣誉奖励

  

研究成果

117 43727 11790
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[1] Zhong FQ,Fan XJ,Yu G,et al. Heat Transfer Of Aviation Kerosene At Supercritical Conditions[J]. Journal Of Thermophysics And Heat Transfer,2009-01-01,23(3):543-550.
浏览/下载:1066/265
[2] Li XF,Huai XL,Cai J,et al. Convective Heat Transfer Characteristics Of China Rp-3 Aviation Kerosene At Supercritical Pressure[J]. Applied Thermal Engineering,2011-01-01,31(14-15):2360-2366.
浏览/下载:939/273
[3] Fan XJ,Yu G. Analysis Of Thermophysical Properties Of Daqing Rp-3 Aviation Kerosene[J]. Journal Of Propulsion Technology,2006-01-01,27(2):187-192.
浏览/下载:913/387
[4] Li L,Wang J,Fan XJ. Development Of Integrated High Temperature Sensor For Simultaneous Measurement Of Wall Heat Flux And Temperature[J]. Review Of Scientific Instruments,2012-07-01,83(7):074901.
浏览/下载:777/221
[5] Zhong FQ,Fan XJ,Yu G,et al. Thermal Cracking And Heat Sink Capacity Of Aviation Kerosene Under Supercritical Conditions[C]. Journal Of Thermophysics And Heat Transfer.1801 Alexander Bell Drive, Ste 500, Reston, Va 22091-4344 Usa.Amer Inst Aeronaut Astronaut.2011-01-01,450-456.
浏览/下载:771/194
[6] Zhong FQ,Fan XJ,Yu G,et al. Thermal Cracking Of Aviation Kerosene For Scramjet Applications[J]. Science In China Series E-technological Sciences,2009-01-01,52(9):2644-2652.
浏览/下载:724/120
[7] Fan XJ,Yu G,Li JG,et al. Investigation Of Vaporized Kerosene Injection And Combustion In A Supersonic Model Combustor[C]. Journal Of Propulsion And Power.2004-07-11,103-110.
浏览/下载:700/171
[8] Zhong FQ,Fan XJ,Yu G,et al. Thermal Cracking And Heat Sink Capacity Of Aviation Kerosene Under Supercritical Conditions[J]. Journal Of Thermophysics And Heat Transfer,2011-01-01,25(3):450-456.
浏览/下载:658/193
[9] Fan XJ,Zhong FQ,Yu G,et al. Catalytic Cracking And Heat Sink Capacity Of Aviation Kerosene Under Supercritical Conditions[J]. Journal Of Propulsion And Power,2009-01-01,25(6):1226-1232.
浏览/下载:646/143
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研究主题

超声速燃烧[16] 航空煤油[8] 超临界态[7] 主动冷却[6] 超燃冲压发动机[4] Combustion[4] 碳氢燃料[4] 火焰稳定[3] 超临界煤油[3] 超声速燃烧室[3] 隔离段[3] Large eddy simulation[3] Aviation Kerosene[3] 超临界[3] Propulsion[3]

成果统计

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