论文:2024,Vol:42,Issue(2):232-240
引用本文:
孙会迅, 孙朋朋, 杨永飞, 袁明川, 樊枫, 林永峰. 直升机双层平尾构型气动特性分析[J]. 西北工业大学学报
SUN Huixun, SUN Pengpeng, YANG Yongfei, YUAN Mingchuan, FAN Feng, LIN Yongfeng. Analysis of aerodynamic characteristics of helicopter biplane tailplane[J]. Journal of Northwestern Polytechnical University

直升机双层平尾构型气动特性分析
孙会迅, 孙朋朋, 杨永飞, 袁明川, 樊枫, 林永峰
中国直升机设计研究所 直升机动力学全国重点实验室, 江西 景德镇 333000
摘要:
为分析双层平尾气动特性,采用CFD方法建立了直升机平尾计算模型,获得了低速前飞和机身大迎角状态不同构型平尾的气动特性,分析了单层和双层平尾构型的气动特性和流场特点,研究了双层平尾对低速前飞状态和大迎角状态的纵向静稳定性改善作用机理。结果表明:双层平尾构型通过抑制旋翼/平尾干扰改善低速前飞状态下的直升机俯仰力矩突增问题,前进比为0.05时,双层平尾俯仰力矩比单层平尾减小56.8%;双层平尾的失速迎角和最大俯仰力矩增大,从而增强直升机大迎角状态的纵向静稳定性,迎角20°时,双层平尾俯仰力矩比单层平尾增大60.1%。
关键词:    双层平尾    气动特性    气动干扰    纵向静稳定性    CFD   
Analysis of aerodynamic characteristics of helicopter biplane tailplane
SUN Huixun, SUN Pengpeng, YANG Yongfei, YUAN Mingchuan, FAN Feng, LIN Yongfeng
National Key Laboratory of Helicopter Aeromechanics, China Helicopter Research and Development Institute, Jingdezhen 333000, China
Abstract:
To analyze the aerodynamic characteristics of helicopter biplane tailplane, computational models for helicopter biplane tailplane and monoplane tailplane were established via CFD. The aerodynamic characteristics of different configurations of tailplanes at low speed forward flight and high angle of attack was obtained. The aerodynamic characteristics and flow characteristics of biplane/monoplane tailplane were analyzed. The mechanism of biplane tailplane to improve the longitudinal static stability at low speed forward flight and high angle of attack was investigated. The results show that the biplane tailplane can improve the helicopter pitch moment surge at low speed forward flight by restraining the rotor/tailplane interference, comparing with the monplane tailplane, the pitch moment of the biplane tailplane was reduced by about 56.8% at an advance ratio of 0.05. The stall angle of attack and maximum pitch moment of the biplane tailplane were larger, which can enhance the helicopter longitudinal static stability at high angle of attack, comparing with the monplane tailplane, the pitch moment of the biplane tailplane increased by about 60.1% at an attack angle of 20°.
Key words:    biplane tailplane    aerodynamic characteristics    aerodynamic interaction    longitudinal static stability    CFD   
收稿日期: 2023-04-09     修回日期:
DOI: 10.1051/jnwpu/20244220232
通讯作者: 孙会迅(1993—) e-mail:1780131647@qq.com     Email:1780131647@qq.com
作者简介: 孙会迅(1993—),工程师
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参考文献:
[1] LEISHMAN J G. Principles of helicopter aerodynamics[M]. 2nd ed. Cambridge: Cambridge University Press, 2006
[2] 倪先平. 直升机气动设计有关问题分析[J]. 直升机技术, 1995(2): 1-11 NI Xianping. Analysis of some aerodynamic design problems for a helicopter[J]. Helicopter Technique, 1995(2): 1-11 (in Chinese)
[3] 张呈林, 郭才根. 直升机总体设计[M]. 北京:国防工业出版社, 2006 ZHANG Chenglin, GUO Caigen. Overall design of helicopter[M]. Beijing: National Defense Industry Press, 2006 (in Chinese)
[4] 王建, 郭高锋, 延小超, 等. 一种平尾涡流发生器设计和流动控制研究[J]. 航空工程进展, 2022, 13(6): 116-124 WANG Jian, GUO Gaofeng, YAN Xiaochao, et al. Design and analysis of a vortex generator on horizontal tail[J]. Advances in Aeronautical Science and Engineering, 2022, 13(6): 116-124 (in Chinese)
[5] 王鑫磊, 李生伟, 林长亮. 前缘缝翼构型平尾直升机气动特性分析[J]. 南京航空航天大学学报, 2020, 52(2): 288-293 WANG Xinlei, LI Shengwei, LIN Changliang. Aerodynamic characteristics of helicopter with leading-edge slatted horizontal tail[J]. Journal of Nanjing University of Aeronautics & Astronautics, 2020, 52(2): 288-293 (in Chinese)
[6] MOEDERSHEIM E, LEISHMAN J G. Investigation of aerodynamic interactions between a rotor and a t-tail empennage[J]. Journal of the American Helicopter Society, 1998, 43: 37-46
[7] GREGORIO F D. Flow field characterization and interactional aerodynamics analysis of a complete helicopter[J]. Aerospace Science & Technology, 2012, 19(1): 19-36
[8] 孙正荣, 杨永东. 悬停及小速度前飞状态下旋翼对机身及平尾气动特性的影响[J]. 空气动力学学报, 1999, 17(3): 243-250 SUN Zhengrong, YANG Yongdong. Effects of rotor on fuselage and horizontal tail aerodynamics in hover and low speed forward flight[J]. Acta Aerodynamica Sinica, 1999, 17(3): 243-250 (in Chinese)
[9] BIAVA M, VIGEVANO L. Simulation of a complete helicopter: A CFD approach to the study of interference effects[J]. Aerospace Science and Technology, 2012, 19(1): 37-49
[10] RINKER M, RIES T, EMBACHER M, et al. Simulation of rotor-empennage interactional aerodynamics in comparison to experimental data[C]//75th Annual Forum of the Vertical Flight Society, 2019
[11] 谭剑锋, 王浩文, 吴超, 等. 基于非定常面元/黏性涡粒子混合法的旋翼/平尾非定常气动干扰[J]. 航空学报, 2014, 35(3): 643-656 TAN Jianfeng, WANG Haowen, WU Chao, et al. Rotor/empennageunsteady aerodynamic interaction with unsteady panel/viscous vortex particle hybrid method[J]. Acta Aeronautica et Astronautica Sinica, 2014, 35(3): 643-656 (in Chinese)
[12] FAURE T M, DUMAS L, MONTAGNIER O. Numerical study of two-airfoil arrangements by a discrete Vortex method[J]. Theoretical & Computational Fluid Dynamics, 2020, 34(1/2): 79-103
[13] MOSCHETTA J M, THIPYOPAS C. Aerodynamic performance of a biplane micro air vehicle[J]. Journal of Aircraft, 2007, 44(1): 291-299
[14] JONES R, CLEAVER D J, GURSUL I. Aerodynamics of biplane and tandem wings at low Reynolds numbers[J]. Experiments in Fluids,2015, 56(6): 1-25
[15] 陈勇亮. 基于电动分布式动力布局飞行器实验研究[D]. 南京:南京航空航天大学,2019 CHEN Yongliang. Experimental study on the distributed electric propulsion aircraft[D]. Nanjing: Nanjing University of Aeronautics and Astronautics, 2019 (in Chinese)
[16] 张庆, 叶正寅. 排式双翼布局低雷诺数气动特性计算研究[J]. 工程力学, 2019, 36(10): 244-256 ZHANG Qing, YE Zhengyin. Computational investigations for aerodynamic characteristic analysis of low reynolds number doubly-tandem wing configurations[J]. Engineering Mechanics, 2019, 36(10): 244-256 (in Chinese)
[17] KELAIDIS M, ALLONGUE M, LEYDER S. The biplane stabilizer of the H160 helicopter-design & development[C]//The ERF 42nd Annual Forum, 2016
[18] 孙会迅, 孙朋朋, 林永峰, 等. 双层平尾对旋翼/平尾干扰的抑制机理研究[J]. 直升机技术, 2021, 210(4): 1-6 SUN Huixun, SUN Pengpeng, LIN Yongfeng, et al. Analysis on the suppression mechanism of biplane tailplane to rotor/empennage aerodynamic interaction[J]. Helicopter Technique, 2021, 210(4): 1-6 (in Chinese)
[19] BLACHA M, FINKA, EGLINP, et al. "CLEANSKY2": exploring new rotorcraft high speed configurations[C]//The 43rd European Rotorcraft Forum, 2017
[20] VELDHUIS L. Aerodynamic installation effects of lateral rotors on a novel compound helicopter configuration[C]//The AHS International 74th Annual Forum & Technology Display, 2018
[21] 何晓萍, 韩东, 杨克龙, 等. 基于双螺旋桨推进的复合式直升机飞行性能[J]. 航空动力学报, 2020, 35(4): 815-822 HE Xiaoping, HAN Dong, YANG Kelong, et al. Flight performance of compound helicopter with twin propeller[J]. Journal of Aerospace Power, 2020, 35(4): 815-822 (in Chinese)
[22] RAYMOND E M, GORTON S A. Steady and periodic pressure measurements on a generic helicopter fuselage model in the presence of a rotor[R]. NASA TM 2000-210286, 2000
[23] 袁广田, 黄鹏, 韩意新. 飞机翼身干扰流动分离机理研究[J]. 应用力学学报, 2020, 37(1): 98-104 YUAN Guangtian, HUANG Peng, HAN Yixin. Mechanism of flow separation induced by aircraft wing-body interference[J]. Chinese Journal of Applied Mechanics, 2020, 37(1): 98-104 (in Chinese)
[24] 徐敏, 安效民. 飞行器空气动力特性分析与计算方法[M]. 西安: 西北工业大学出版社, 2012: 116-117 XU Min, AN Xiaomin. Analysis and computing method of aircraft aerodynamics[M]. Xi'an: Northwestern Polytechnical University Press, 2012: 116-117 (in Chinese)
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