Experimental Investigation on Spray Characteristic ofInternally-Staged Combustor
1.School of Energy and Power Engineering,Beihang University,Beijing 100191,China;2.National Key Laboratory of Science and Technology on Aero-Engine Aero-Thermodynamics,School of Energy and Power Engineering,Beihang University,Beijing 100191,China;3.AECC Commercial Aircraft Engine Co. Ltd.,Shanghai 200241,China
[1] ICAO 9953-2010, Report of the Independent Experts to CAEP/8 on the Second NOx Review and the Establishment of Medium and Long Term Technology Goals for NOx[S].
[2] 李 杰. 先进低氮氧化物排放燃烧室技术分析[J]. 航空科学技术, 2010, (4): 11-13.
[3] 宋双文, 胡好生. 一种新概念燃烧室—驻涡燃烧室[C]. 西安:中国航空学会推进系统气动热力学专业学术交流会议, 2007.
[4] 刘 静, 肇俊武. 国外民用航空发动机低污染燃烧室的发展[J]. 航空发动机, 2012, 38(4): 11-16.
[5] Lefebvre A H. Atomization and Sprays[M]. Washington: Hemisphere Pub. Corp, 1989.
[6] 黎 明, 刘海杰. TAPS低排放燃烧室的发展与设计特点分析[J]. 航空制造技术, 2014, 445(z1): 84-87.
[7] Lefebvre A H. Gas Turbine Combustion Alternative Fuels and Emissions[M]. Boca Raton: CRC Press, 2010.
[8] Mularz E. Lean, Premixed, Prevaporized Combustion for Aircraft Gas Turbine Engines[C]. Los Vagas: 15th Joint Propulsion Conference, 1979.
[9] Charest M R J, Gauthier J E D, Huang X. Design of a Lean Premixed Prevaporized Can Combustor[R]. ASME GT2006-91004.
[10] Armitage C A, Cant R S, Dowling A P, et al. Linearised Theory for LPP Combustion Dynamics[R]. ASME GT2003-38670.
[11] Fiorentino A J, Greene W, Kim J C, et al. Variable Geometry, Lean, Premixed, Prevaporized Fuel Combustor Conceptual Design Study[J]. Journal of Engineering for Gas Turbines & Power, 1980, 102(4): 896-902.
[12] Amoresano A, Tuccillo R, Cameretti M C. Combined Experimental-Numerical Approach for the Fuel Jet Study in a LPP Combustor[R]. ASME GT2011-46339.
[13] Nakae T, Saigo M, Santo A, et al. Spray Test of Fuel Nozzle for Lean Pre-Mixed Pre-Vaporized Combustor[R]. ASME GT2002-30072.
[14] Providakis T, Zimmer L, Scouflaire P, et al. Effect of Fuel Distribution on Spray Dynamics in a Two-Staged Multi-Injection Burner[J]. ASME Turbo Expo, 2011(2): 1217-1229.
[15] Liu C, Liu F, Yang J, et al. Experimental Investigation of Spray and Combustion Performances of a Fuel-Staged Low Emission Combustor, Part I: Effects of Main Swirl Angle[R]. ASME GT2016-56530.
[16] 付镇柏, 林宇震, 张 弛. 中心分级燃烧室预燃级燃烧性能实验[J]. 航空动力学报, 2015, 30(1): 46-52.
[17] 李海涛, 许全宏, 付镇柏. 中心分级燃烧室预燃级贫油熄火性能试验[J]. 航空动力学报, 2014, 29(9):2188-2194.
[18] 刘富强, 穆 勇, 刘存喜. 燃油分级对中心分级燃烧室NOx排放影响的实验研究[J]. 燃烧科学与技术, 2013, 19(3): 254-260.
[19] 付镇柏, 林宇震, 傅奇慧. 不同台阶高度对中心分级燃烧室点火熄火性能的影响[J]. 航空动力学报, 2014, 29(5):1062-1070.
[20] 黄 勇, 林宇震, 樊未军, 等. 燃烧与燃烧室[M]. 北京:北京航空航天大学出版社, 2009.
[21] Gepperth S, Koch R, Bauer H J. Analysis and Comparison of Primary Droplet Characteristics in the Near Field of a Prefilming Airblast Atomizer[R]. ASME GT2013-94033.
[22] Lefebvre A H. Energy Considerations in Twin-Fluid Atomization[J]. Engineer Gas Turbines Power, 1990, 114(1): 89-96.