Governed by: Ministry of Industry and Information Technology of the People's Republic of China
Sponsored by: Northwestern Polytechnical University  Chinese Society Aeronautics and Astronautics
Address: Aviation Building,Youyi Campus, Northwestern Polytechnical University
Aerodynamic Integrity of Military Aerocraft
Affiliation:

1.Aviation Engineering School,Air Force Engineering University,Xi’an 710038;2.China

Clc Number:

V215.1

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    Abstract:

    In view of the fact that there is no one that can comprehensively characterize the aerodynamic quality characteristics of military aerocraft, the concept of aerodynamic integrity is proposed for the first time and its research is carried out. It is believed that the aerodynamic integrity of military aerocraft can comprehensively characterize its aerodynamic mass characteristics in the process of combat use. Firstly, the process and definition of the concept of aerodynamic integrity are introduced, and the basic connotation and basic characteristics are discussed. It is believed that the aerodynamic integrity of military aerocraft is the basis of the combat effectiveness of aerocraft. The characterization method of Aerocraft aerodynamic integrity is introduced, and the main influencing factors of military aerocraft aerodynamic integrity are analyzed. The new concept of aerodynamic integrity of military aerocraft is introduced aims to provide reference for the development of military aerocraft design, manufacturing, testing and support in China.

    Reference
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    [2] 中国人民解放军总飞行器部. 军用飞机结构完整性大纲: GJB775.A-2012 [S]. 中华人民共和国国家军用标准, 2012.
    [3] USA Department of Defense. Weapon system integrity program: MIL- HDBK-515[S]. USFA: Department of defense standard, 2013.
    [4] USA Department of Defense. Propulsion system integrity program: MIL-STD-3024[S]. USFA: Department of defense standard, 2008.
    [5] USA Department of Defense. Mechanical equipment and subsystems integrity program: MIL-STD-1798C[S]. USFA: Department of defense standard, 2013.
    [6] 何宇廷,张腾,马斌麟. 军用飞机结构作战完整性的基本内涵与评估[J]. 空军工程大学学报(自然科学版),2019, 20(5): 1-7.HE Yuting, ZHANG Teng, MA Binlin. Basic Connotation and Evaluation of Military Aircraft Structural Operational Integrity [J]. Journal of Air Force Engineering University (Natural Science Edition), 2019, 20(5): 1-7.
    [7] USA Department of Defense. Aircraft structural integrity program (ASIP): MIL-STD-1530D[S]. USAF: Department of defense standard, 2016.
    [8] 何宇廷. 装备的作战完整性初探[J]. 空军工程大学学报(自然科学版),2020, 21(1): 1-8,31.HE Yuting. A Study of Equipment Operational Integrity[J]. Journal of Air Force Engineering University (Natural Science Edition), 2020, 21(1): 1-8,31.
    [9] HE Yuting. On Aircraft Operational Integrity [C]// 32nd Congress of the International Council of the Aeronautical Sciences. China, 2021.
    [10] 何宇廷.飞行器健康状态的表征及应用[J]. 航空工程进展, 2021, 12(3): 1-8.HE Yuting. Study on characterization method of aircraft health status[J]. Advances in Aeronautical Science and Engineering, 2021, 12(3): 1-8.
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ZHANG Dengcheng, HE Yuting, ZHAO Zaihao, ZHANG Teng, ZHANG Yanhua. Aerodynamic Integrity of Military Aerocraft[J]. Advances in Aeronautical Science and Engineering,2025,16(1):133-138

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History
  • Received:August 11,2024
  • Revised:December 25,2024
  • Adopted:December 27,2024
  • Online: January 02,2025
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