Acta Aeronautica et Astronautica Sinica ›› 2026, Vol. 47 ›› Issue (12): 232738.doi: 10.7527/S1000-6893.2026.32738
• Solid Mechanics and Vehicle Conceptual Design • Previous Articles
Tairan CHEN1,2, Qilin YANG1, Jincheng LONG1,3(
), Jun JIAO4,5, Shengzhe SHI4,5
Received:2025-08-31
Revised:2025-10-28
Accepted:2026-01-10
Online:2026-02-10
Published:2026-02-09
Contact:
Jincheng LONG
E-mail:longjc009@avic.com
Supported by:CLC Number:
Tairan CHEN, Qilin YANG, Jincheng LONG, Jun JIAO, Shengzhe SHI. Air-water coupling effect and motion response characteristics of seaplane during takeoff and landing process[J]. Acta Aeronautica et Astronautica Sinica, 2026, 47(12): 232738.
| [1] | 黄领才, 雍明培. 水陆两栖飞机的关键技术和产业应用前景[J]. 航空学报, 2019, 40(1): 522708. |
| HUANG L C, YONG M P. Key technologies and industrial application prospects of amphibian aircraft[J]. Acta Aeronautica et Astronautica Sinica, 2019, 40(1): 522708 (in Chinese). | |
| [2] | 申蒸洋, 陈孝明, 黄领才. 大型水陆两栖飞机特殊任务模式对总体设计的挑战[J]. 航空学报, 2019, 40(1): 522400. |
| SHEN Z Y, CHEN X M, HUANG L C. Challenges for aircraft design due to special mission models of large-scale amphibious aircraft[J]. Acta Aeronautica et Astronautica Sinica, 2019, 40(1): 522400 (in Chinese). | |
| [3] | LIN M C, SHIEH L D. Simultaneous measurements of water impact on a two-dimensional body[J]. Fluid Dynamics Research, 1997, 19(3): 125-148. |
| [4] | 孙辉, 卢炽华, 何友声. 二维楔形体冲击入水时的流固耦合响应的实验研究[J]. 水动力学研究与进展(A辑), 2003, 18(1): 104-109. |
| SUN H, LU C H, HE Y S. Experimental research on the fluid-structure interaction in water entry of 2D elastic wedge[J]. Journal of Hydrodynamics, 2003, 18(1): 104-109 (in Chinese). | |
| [5] | WATANABE S. Resistance of impact on water surface, part I-Cone[J]. Institute of Physical and Chemical Research, 1930, 12: 251-267. |
| [6] | WATANABE S. Resistance of impact on water surface, part II-Cone(continued)[J]. Institute of Physical and Chemical Research, 1930, 14: 153-168. |
| [7] | BOTTOMLEY G H. The impact of a model seaplane floats on water: Reports and Memoranda No.583[R]. Washington, D.C.: NACA, 1919. |
| [8] | 郗超, 刘静, 贾晓鹏. 船身式水上飞机起飞距离研究[J]. 航空科学技术, 2016, 27(10): 12-15. |
| XI C, LIU J, JIA X P. Takeoff distance research of flying boat[J]. Aeronautical Science Technology, 2016, 27(10): 12-15 (in Chinese). | |
| [9] | 左仔滨, 李成华. 水池环境对水上飞机全机模型试验的影响[J]. 科学技术与工程, 2025, 25(4): 1711-1716. |
| ZUO Z B, LI C H. Influence of tank environment on the test of seaplane model[J]. Science Technology and Engineering, 2025, 25(4): 1711-1716 (in Chinese). | |
| [10] | 孙丰, 吴彬, 廉滋鼎, 等. 着水姿态对大型水陆两栖飞机着水性能的影响[J]. 船舶力学, 2019, 23(4): 397-404. |
| SUN F, WU B, LIAN Z D, et al. Influence of pitch angle on water-entry performance of large-scale amphibian aircraft hull[J]. Journal of Ship Mechanics, 2019, 23(4): 397-404 (in Chinese). | |
| [11] | 杨荣, 杨智春, 魏浩格. 大型水陆两栖飞机抗浪需求分析[J]. 航空学报, 2025, 46(10): 231145. |
| YANG R, YANG Z C, WEI H G. Demand analysis of wave resistance for large amphibious aircraft[J]. Acta Aeronautica et Astronautica Sinica, 2025, 46(10): 231145 (in Chinese). | |
| [12] | GAO X J, LI C H, LIU T, et al. Research on wave motion response characteristics of a seaplane[J]. Journal of Physics: Conference Series, 2021, 1985(1): 012031. |
| [13] | ZHANG H, CHEN J, WANG F, et al. Scale effect on water landing performance of amphibious aircraft[C]∥ 34th Congress of the International Council of the Aeronautical Sciences. 2024. |
| [14] | WEN Q, CHENG Z H, YANG K Z, et al. Influence of model scale on wave landing characteristics of seaplane[C]∥2023 Asia-Pacific International Symposium on Aerospace Technology (APISAT 2023) Proceedings. Singapore: Springer, 2024: 917-926. |
| [15] | GUO Y, MA D L, YANG M Q, et al. Numerical analysis of the take-off performance of a seaplane in calm water[J]. Applied Sciences, 2021, 11(14): 6442. |
| [16] | 段旭鹏. 水上飞机水面滑行起降的数值模拟[D]. 西安: 西北工业大学, 2020. |
| DUAN X P. Numerical simulation of seaplane taxiing and landing on water surface[D]. Xi’an: Northwestern Polytechnical University, 2020 (in Chinese). | |
| [17] | LU Y, DEL BUONO A, XIAO T, et al. Loads prediction at early stage of water landing on amphibious aircraft with a V-shaped hull[C]∥ 9th European Conference for Aeronautics and Space Sciences. 2022. |
| [18] | 马增辉, 刘立胜, 朱国甫, 等. 水陆两栖飞机波浪水面上着水动力特性研究[J]. 计算机仿真, 2018, 35(7): 41-45. |
| MA Z H, LIU L S, ZHU G F, et al. Investigation of dynamic characteristics of amphibious aircraft landing on waves[J]. Computer Simulation, 2018, 35(7): 41-45 (in Chinese). | |
| [19] | ZHA R S, WANG K, SUN J L, et al. Numerical simulations of seaplane ditching on calm water and uniform water current coupled with wind[J]. Journal of Marine Science and Engineering, 2024, 12(2): 296. |
| [20] | QIU L J, SONG W B. Efficient decoupled hydrodynamic and aerodynamic analysis of amphibious aircraft water takeoff process[J]. Journal of Aircraft, 2013, 50(5): 1369-1379. |
| [21] | ZHU Y G, FAN G L, YI J Q. Controller design for flying boats taking off from water with regular waves[C]∥ 2012 IEEE International Conference on Mechatronics and Automation. Piscataway: IEEE Press, 2012: 480-485. |
| [22] | MASRI J, DALA L, HUARD B. A review of the analytical methods used for seaplanes’ performance prediction[J]. Aircraft Engineering and Aerospace Technology, 2019, 91(6): 820-833. |
| [23] | DUAN X P, SUN W P, CHEN C, et al. Numerical investigation of the porpoising motion of a seaplane planing on water with high speeds[J]. Aerospace Science and Technology, 2019, 84: 980-994. |
| [24] | WANG L X, YIN H P, YANG K, et al. Water takeoff performance calculation method for amphibious aircraft based on digital virtual flight[J]. Chinese Journal of Aeronautics, 2020, 33(12): 3082-3091. |
| [25] | 张浪, 程用胜, 王福新. 水上飞机静水起飞过程水气耦合性能分析[J]. 科学技术与工程, 2018, 18(11): 190-195. |
| ZHANG L, CHENG Y S, WANG F X. Coupled hydrodynamic and aerodynamic performance analysis of seaplane take-off process in calm water[J]. Science Technology and Engineering, 2018, 18(11): 190-195 (in Chinese). | |
| [26] | WANG M Z, WU G L, LV H Q, et al. Non-linear time-varying modeling and simulation methods for hydrodynamic-aerodynamic coupling near-surface flight scenarios[J]. Aerospace, 2025, 12(2): 133. |
| [27] | FRAZZA L, LOSEILLE A, DERVIEUX A, et al. Nonlinear corrector for Reynolds-averaged Navier-Stokes equations[J]. International Journal for Numerical Methods in Fluids, 2019, 91(11): 557-585. |
| [28] | MENTER F R. Two-equation eddy-viscosity turbulence models for engineering applications[J]. AIAA Journal, 1994, 32(8): 1598-1605. |
| [29] | HIRT C W, NICHOLS B D. Volume of Fluid (VOF) method for the dynamics of free boundaries[J]. Journal of Computational Physics, 1981, 39(1): 201-225. |
| [30] | 马云飞, 李涛, 熊进标. 基于VOF方法和DFBI模型的溃坝水流数值模拟[J]. 应用科技, 2021, 48(4): 23-28. |
| MA Y F, LI T, XIONG J B. Numerical simulation method of dam break flow based on VOF method and DFBI model[J]. Applied Science and Technology, 2021, 48(4): 23-28 (in Chinese). | |
| [31] | 石林飞. 波浪中水陆两栖飞机滑行运动及起降特性研究[D]. 哈尔滨: 哈尔滨工程大学, 2022. |
| SHI L F. Research on taxiing motion and take-off and landing characteristics of amphibious aircraft in waves[D]. Harbin: Harbin Engineering University, 2022 (in Chinese). | |
| [32] | 高现娇, 桑腾蛟, 史圣哲. 网格运动方式对水陆两栖飞机单船身阻力计算影响[J]. 船海工程, 2024, 53(3): 69-73. |
| GAO X J, SANG T J, SHI S Z. Influence of grid motion mode upon numerical calculation of fuselage resistance for an amphibious aircraft[J]. Ship Ocean Engineering, 2024, 53(3): 69-73 (in Chinese). | |
| [33] | 褚林塘. 水上飞机水动力设计[M]. 北京: 航空工业出版社, 2014. |
| CHU L T. Seaplane hydrodynamic design[M]. Beijing: Aviation Industry Press, 2014 (in Chinese). | |
| [34] | 黄淼, 吴彬, 蒋荣, 等. 水上飞机在波浪上运动响应特性试验研究[J]. 实验流体力学, 2015, 29(3): 41-46. |
| HUANG M, WU B, JIANG R, et al. Experimental study on motion response of a seaplane on waves[J]. Journal of Experiments in Fluid Mechanics, 2015, 29(3): 41-46 (in Chinese). | |
| [35] | 周立胜, 杨荣, 王艳艳. 基于结构能力的水上飞机适海性研究[J]. 科技创新与应用, 2024, 14(6): 92-94, 99. |
| ZHOU L S, YANG R, WANG Y Y. Research on seaplane seaworthiness based on structural capacity[J]. Technology Innovation and Application, 2024, 14(6): 92-94, 99 (in Chinese). |
| [1] | FENG Zhenyu, FU Boyu, XIE Jiang, DUAN Zhuxuan, PAN Hanyuan. Dynamic response of fuselage panel under explosive impact load [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 2022, 43(6): 525513-525513. |
| [2] | CHEN Xian, CHEN Cheng, HUANG Jiangtao, CHEN Qisheng, YU Longzhou, ZHONG Shidong. Effects of belly flap on take-off and landing characteristics of a flying-wing vehicle [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 2022, 43(3): 125028-125028. |
| [3] | ZHANG Zhuzhu, CHEN Yueliang, YAO Niankui, BIAN Guixue, ZHANG Yong, ZHANG Yangguang. Damage mechanism and corrosion resistance of 38CrMoAl nitrided steel under impact load [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 2021, 42(5): 524215-524215. |
| [4] | ZHAO Lijie, TIAN Mengwei, LI Jingkui, WANG Mingyang, LIU Da. Float design and take-off taxiing of electric seaplanes [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 2021, 42(3): 624590-624590. |
| [5] | HUANG Lingcai, YONG Mingpei. Key technologies and industrial application prospects of amphibian aircraft [J]. Acta Aeronautica et Astronautica Sinica, 2019, 40(1): 522708-522708. |
| [6] | HE Min, ZHU Xiaolong, LIU Xiaoming, LIU Fan, YAO Xiaohu. Impact response of ground ejection of front fuselage structure of carrier-based aircraft [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 2018, 39(5): 221711-221711. |
| [7] | CHU Lintang, WU Bin, WANG Mingzhen, SUN Feng. Theoretical calculation and experiment on impact loads of landing of wing-in-ground aircraft on water surface [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 2016, 37(12): 3698-3705. |
| [8] | Yan Gang;Zhou Li. Impact Load Identification for Stiffened Composite Structure [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 2008, 29(5): 1150-1156. |
| [9] | WU Gui-rong;ZHANG Yun-ran;WANG Yu-qing;YOU Guang-xing. CHANGES OF INTRACRANIAL PRESSURE DURING HEAD IMPACT IN MonKEYS AND PROTECTION OF HEAD IMPACT INJURIES [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 1999, 20(S1): 55-57. |
| [10] | Yang Zhi-guo;Liu Yuan-yong;Tang Xuan-chun;Jia De-xin. DYNAMIC RESPONSE ANALYSIS AND EXPERIMENTAL RESEARCH OF PLATE UNDER IMPACT LOAD [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 1992, 13(6): 258-265. |
| [11] | He Lianzhu. STUDY OF DYNAMIC STRENGTH ON COMPOSITE WING [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 1991, 12(12): 635-638. |
| [12] | Huang Luquan;Li Fuguo. EXPERIMENTAL STUDY OF THE LAW RELATING THE EXTRUDING LOAD OF COLD EXTRUSION PRESS TO BUFFERING PARAMETERS [J]. ACTA AERONAUTICAET ASTRONAUTICA SINICA, 1991, 12(10): 532-535. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||
Address: No.238, Baiyan Buiding, Beisihuan Zhonglu Road, Haidian District, Beijing, China
Postal code : 100083
E-mail:hkxb@buaa.edu.cn
Total visits: 6658907 Today visits: 1341All copyright © editorial office of Chinese Journal of Aeronautics
All copyright © editorial office of Chinese Journal of Aeronautics
Total visits: 6658907 Today visits: 1341

