Acta Aeronautica et Astronautica Sinica ›› 2025, Vol. 46 ›› Issue (S1): 732159.doi: 10.7527/S1000-6893.2025.32159
• Excellent Papers of the 2nd Aerospace Frontiers Conference/the 27th Annual Meeting of the China Association for Science and Technology •
Lixiong ZHENG1,2, Zhe CHEN1,2, Xin WANG1,2, Qijun ZHAO1,2(
)
Received:2025-02-25
Revised:2025-03-27
Accepted:2025-04-27
Online:2025-05-09
Published:2025-05-06
Contact:
Qijun ZHAO
E-mail:zhaoqijun@nuaa.edu.cn
Supported by:CLC Number:
Lixiong ZHENG, Zhe CHEN, Xin WANG, Qijun ZHAO. Prediction of whirl flutter boundary for tiltrotor aircraft based on BPNN with adaptive data[J]. Acta Aeronautica et Astronautica Sinica, 2025, 46(S1): 732159.
Table 1
Basic parameters of MTR model
| 参数 | 数值 |
|---|---|
| 桨叶片数Nb | 3 |
| 旋翼半径Ra/m | 0.723 9 |
| 挥舞变距调节系数 | -0.268 |
| 升力线斜率 | 5.936 |
| 巡航转速 | 109.96 |
| 桨叶挥舞惯量 | 0.055 2 |
| 机翼展长 | 0.870 |
| 机翼弦长 | 0.392 |
| 桅杆高度 | 0.243 |
| 短舱重心偏置 | -0.032 7 |
| 机翼前掠角 | 0 |
| 机翼垂弯刚度 | 2.62×104 |
| 机翼弦弯刚度 | 1.159×105 |
| 机翼扭转刚度 | 1.52×104 |
| 机翼垂向阻尼 | 7.733 |
| 机翼弦向阻尼 | 17.709 |
| 机翼扭转阻尼 | 0.685 |
| [1] | 张卫国, 唐敏, 武杰, 等. 倾转旋翼机风洞试验综述[J]. 航空学报, 2024, 45(9): 530114. |
| ZHANG W G, TANG M, WU J, et al. Overview of wind tunnel test research on tiltrotor aircraft[J]. Acta Aeronautica et Astronautica Sinica, 2024, 45(9): 530114 (in Chinese). | |
| [2] | KVATERNIK R G. Experimental and analytical studies in tilt rotor aeroelasticity[C]∥Presented at the AHS/NASA Ames Specialists’ Meeting on Rotorcraft Dynamics. 1974. |
| [3] | YOUNG M I, LYTWYN R T. The influence of blade flapping restraint on the dynamic stability of low disk loading propeller-rotors[J]. Journal of the American Helicopter Society, 1967, 12(4): 38-54. |
| [4] | JOHNSON W. Dynamics of tilting proprotor aircraft in cruise flight: NASA-TN-D-7677[R]. Moffett Field: Ames Research Center and U.S. Army Air Mobility R & D Laboratory, 1974. |
| [5] | SETTLE T B, KIDD D L. Evolution and test history of the V-22 0.2-scale aeroelastic model[C]∥Presented at the American Helicopter Society National Specialists’ Meeting on Rotorcraft Dynamics. 1989. |
| [6] | WILLIAM T Y, JR, RAYMOND G K. A historical overview of aeroelasticity branch and transonic dynamics tunnel contributions to rotorcraft technology and development: NASA/TM-2001-211054[R]. Hampton: NASA Langley Research Center, 2001. |
| [7] | NIXON M W. Aeroelastic response and stability of tiltrotors with elastically-coupled composite rotor blades[D]. College Park: University of Maryland, 1993. |
| [8] | PIATAK D J, KVATERNIK R G, NIXON M, et al. A wind-tunnel parametric investigation of tiltrotor whirl-flutter stability boundaries[C]∥Presented at the American Helicopter Society 57th Annual Forum. 2001. |
| [9] | ACREE C W JR. Impact of technology on heavy lift tiltrotors[C]∥Presented at the American Helicopter Society 62nd Annual Forum. 2006. |
| [10] | JOHNSON S C. Design and testing of a small, semi-span, prop-rotor model for whirl flutter stability[D]. State College: Pennsylvania State University, 2014: 31-65. |
| [11] | KAMBAMPATI S. Optimization of composite tiltrotor wings with extensions and winglets[D]. State College: Pennsylvania State University, 2016: 5-30. |
| [12] | IVANCO T G, KANG H, KRESHOCK A R, et al. Generalized predictive control for active stability augmentation and vibration reduction on an aeroelastic tiltrotor model[C]∥AIAA Scitech 2022 Forum. Reston: AIAA, 2022. |
| [13] | 徐敏. 倾转旋翼机的发展与关键技术综述[J]. 直升机技术, 2003(2): 40-44. |
| XU M. Summary of development and key technologies of tilt-rotor aircraft[J]. Helicopter Technique, 2003(2): 40-44 (in Chinese). | |
| [14] | 邓景辉. 高速直升机关键技术与发展[J]. 航空学报, 2024, 45(9): 529085. |
| DENG J H. Key technologies and development for high-speed helicopters[J]. Acta Aeronautica et Astronautica Sinica, 2024, 45(9): 529085 (in Chinese). | |
| [15] | 杨卫东, 董凌华. 倾转旋翼过渡状态瞬态响应分析与试验[J]. 航空动力学报, 2005, 20(5): 882-889. |
| YANG W D, DONG L H. Analysis and experiments of the tiltrotor transient response during transition flight[J]. Journal of Aerospace Power, 2005, 20(5): 882-889 (in Chinese). | |
| [16] | 杨卫东, 董凌华. 变转速倾转旋翼机多体系统气弹响应分析[J]. 哈尔滨工业大学学报, 2006, 38(2): 282-286, 324. |
| YANG W D, DONG L H. Multi-body aeroelastic analysis of til trotor with varying rotor rotational speed[J]. Journal of Harbin Institute of Technology, 2006, 38(2): 282-286, 324 (in Chinese). | |
| [17] | 董凌华, 杨卫东. 倾转旋翼/机翼耦合系统过渡飞行瞬态响应分析[J]. 南京航空航天大学学报, 2006, 38(3): 361-366. |
| DONG L H, YANG W D. Transient response analysis of rotor/wing coupled during tiltrotor transition flight[J]. Journal of Nanjing University of Aeronautics & Astronautics, 2006, 38(3): 361-366 (in Chinese). | |
| [18] | 崔超. 基于机翼控制的倾转旋翼机回转颤振主动抑制研究[D]. 南京: 南京航空航天大学, 2019: 9-20. |
| CUI C. Research on active suppression of rotary flutter of tilt-rotor aircraft based on wing control[D]. Nanjing: Nanjing University of Aeronautics and Astronautics, 2019: 9-20 (in Chinese). | |
| [19] | 薛立鹏, 张呈林. 前飞状态倾转旋翼机气弹稳定性建模[J]. 航空动力学报, 2009, 24(2): 255-261. |
| XUE L P, ZHANG C L. Modeling study on tilt-rotor’s aeroelastic stability in cruise flight[J]. Journal of Aerospace Power, 2009, 24(2): 255-261 (in Chinese). | |
| [20] | LI Z Q, XIA P Q. Aeroelastic stability of full-span tiltrotor aircraft model in forward flight[J]. Chinese Journal of Aeronautics, 2017, 30(6): 1885-1894. |
| [21] | 李治权, 夏品奇. 一种改进的前飞时倾转旋翼机非定常气弹动力学模型[J]. 中国科学: 技术科学, 2018, 48(8): 901-907. |
| LI Z Q, XIA P Q. An improved unsteady aeroelastic model for tiltrotor aircraft in forward flight[J]. Scientia Sinica (Technologica), 2018, 48(8): 901-907 (in Chinese). | |
| [22] | 邓旭东, 胡和平. 倾转旋翼机螺旋颤振稳定性研究[J]. 空气动力学学报, 2018, 36(6): 1041-1046. |
| DENG X D, HU H P. Study on whirl-flutter stability of a tiltrotor aircraft[J]. Acta Aerodynamica Sinica, 2018, 36(6): 1041-1046 (in Chinese). | |
| [23] | LI H X, QU X J, WANG W J. Multi-body motion modeling and simulation for tilt rotor aircraft[J]. Chinese Journal of Aeronautics, 2010, 23(4): 415-422. |
| [24] | RISO C, GHADAMI A, CESNIK C E S, et al. Data-driven forecasting of postflutter responses of geometrically nonlinear wings[J]. AIAA Journal, 2020, 58(6): 2726-2736. |
| [25] | YUAN H, KOU J Q, GAO C Q, et al. Resolvent analysis for flutter boundary prediction in transonic flow[J]. AIAA Journal, 2024, 62(8): 3191-3195. |
| [26] | 郑礼雄, 王博, 招启军, 等. 倾转旋翼机多模态耦合动力学建模和气弹稳定性参数影响[J]. 航空动力学报, 2025, 40(3): 20230445. |
| ZHENG L X, WANG B, ZHAO Q J, et al. Multi-mode coupling dynamic modeling and influence of aeroelastic stability parameters of tiltrotor aircraft[J]. Journal of Aerospace Power, 2025, 40(3): 20230445 (in Chinese). | |
| [27] | TSAI F, SUTHERLAND, AKINWALE, et al. Development and whirl flutter test of the Maryland tiltrotor rig[J]. Journal of the American Helicopter Society, 2024, 69(1): 1-15. |
| [28] | SU J Y, CHEN Y, ZHANG D B, et al. Full-parameter identification model based on back propagation algorithm for brushless doubly fed induction generator[J]. IEEE Transactions on Power Electronics, 2020, 35(10): 9953-9958. |
| [29] | 马菲, 张琼, 赖培军, 等. 基于BP神经网络的试飞训练安全性量化模型[J]. 航空学报, 2024, 45(5): 529957. |
| MA F, ZHANG Q, LAI P J, et al. BP neural network-based quantitative classification model for safety in experimental flight training[J]. Acta Aeronautica et Astronautica Sinica, 2024, 45(5): 529957 (in Chinese). |
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