Performance Modelling of Geared Contra-RotatingPropfan Engine
1.School of Power and Energy,Northwestern Polytechnical University,Xi’an 710072,China;2.AECC Hunan Aviation Powerplant Research Institute,Zhuzhou 412002,China
[1] William E S, Jay E T, John A V. Large-Scale Advanced Prop-Fan (LAP) Blade Design[R]. NASA-CR-174790, 2000.
[2] Mikkelson D C, Blaha B J, Mitchell G A, et al. Design and Performance of Energy Efficient Propellers for Mach 0. 8 Cruise[R]. NASA-TM-73612, 1977.
[3] Mitchell G A. Experimental Aerodynamic Performance of Advanced 40°-Swept 10-Blade Propeller Model at Mach 0.6 to 0.85[R]. NASA-TM-88969, 1988.
[4] Jeracki R J, Mikkelson D C, Blaha B J. Wind Tunnel Performance of Four Energy Efficient Propellers Designed for Mach 0.8 Cruise[R]. NASA-TM-79124, 1979.
[5] Smith A F, Brooks B M. Dynamic Response and Stability of a Composite Prop-Fan Mode1[R]. NASA-CR-179528, 1986.
[6] Chandrasekaran B. Method for the Prediction of the Installation Aerodynamics of a Propfan at Subsonic Speeds: User Manual [R]. NASA-CR-178057, 1986.
[7] 严成忠. 绿色动力:开式转子航空发动机[J]. 航空科学技术, 2013, 25(1):6-12.
[8] 强十思. 桨扇发动机及其在巡航导弹上的应用[J]. 推进技术, 1992, 13(6): 19-25. (QIANG Shi-si. Propfan and Its Application in Cruise Missles [J]. Journal of Propulsion Technology, 1992, 13(6): 19-25.)
[9] 刘菊艳. 先进桨扇发动机巡航导弹[J]. 飞航导弹, 1991, (8): 1-6.
[10] 胡晓煜. A320/B737客机2020年后换代, 开式转子发动机显露希望[J]. 燃气涡轮试验与研究, 2009, 22(3): 60-62.
[11] Bellocq P, Sethi V, Cerasi L, et al. Advanced Open Rotor Performance Modelling for Multidisciplinary Optimization Assessments[C]. Glasgow: ASME Turbo Expo 2010: Power for Land, Sea, and Air, 2010.
[12] 孙立业, 朱大明. 桨扇发动机性能仿真建模与初步分析[J]. 航空科学技术, 2011, 23(5): 25-27.
[13] 屠秋野, 倪力伟, 杨祥明, 等. 开式转子发动机计算模型及调节研究[J]. 航空发动机, 2016, 42(6): 36-43.
[14] 王逸维, 黄向华. 拉力式对转桨扇发动机的建模与性能评估[J]. 推进技术, 2018, 39(2):241-250. (WANG Yi-wei, HUANG Xiang-hua. Modeling and Performance Estimate of Pull Type Propfan Engine [J]. Journal of Propulsion Technology, 2018, 39(2):241-250.)
[15] 张 帅, 余雄庆. 面向飞机总体设计的开式转子发动机分析模型[J]. 航空动力学报, 2012, 27(8):1801-1808.
[16] Stefko G, Jeracki R. Porous Wind Tunnel Corrections for Counter-Rotation Propeller Testing [R]. AIAA88-2055.
[17] 单 鹏. 对转螺旋桨/桨扇差动行星齿轮机构动力学设计方法及分析[J]. 航空动力学报, 2017, 32(4):1012-1017.
[18] Rohrbach C, Metzger F B, Black D M, et, al. Evaluation of Wind Tunnel Performance Testings of an Advanced 45° Swept 8-Bladed Propeller at Mach Numbers from 0.45 to 0.85[R]. NASA-CR-3505, 1982.