COMPARISON OF MIG-29 AND F-16 AIRCRAFT IN THE FIELD OF SUSCEPTIBILITY TO DESTRUCTION IN COMBAT

IF 0.8 Q3 ENGINEERING, AEROSPACE Aviation Pub Date : 2022-10-12 DOI:10.3846/aviation.2022.17592
M. Papis, Tomasz Krawczyk
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引用次数: 0

Abstract

Because the Polish Air Force currently uses F-16 and MiG-29 aircraft, the aim of the study was to conduct a comparison of the susceptibility to destruction in combat of these two aircraft. The first part of the work concerned the analysis of individual critical components, such as: general characteristics of the airframe structure, aircraft engine, flight control system, fuel system, aircraft weapons, radar system. The index of susceptibility to destruction in combat was defined considering the listed critical components and the following types of enemy weapon: aircraft gun, air-to-air missile, anti-aircraft gun, surface-to-air missile. The analysis proved that the aircraft have similar susceptibility to damage in combat, a slight advantage of the F-16 aircraft in this respect was determined. The presented scheme can be used to analyze other aircraft. Proposals of aircraft modifications, directions of further actions, possibilities of using the described method were presented. The method can be used to making decisions by governments regarding the purchase aircraft for their fleets and identify aircraft critical components with high susceptibility to destruction in order to introduce appropriate modifications by military aircraft manufacturers.
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米格-29和f-16飞机在战场上的易毁性比较
由于波兰空军目前使用F-16和米格-29飞机,因此研究的目的是对这两种飞机在战斗中的破坏敏感性进行比较。工作的第一部分是对各个关键部件的分析,如:机身结构的一般特性、飞机发动机、飞行控制系统、燃油系统、飞机武器、雷达系统。考虑到所列的关键部件和以下类型的敌方武器:飞机炮、空对空导弹、高射炮、地对空导弹,确定了战斗中易受破坏的指数。分析证明,飞机在战斗中具有相似的损伤敏感性,确定了F-16飞机在这方面的轻微优势。所提出的方案可用于其他飞机的分析。提出了飞机改装的建议、进一步行动的方向、使用所述方法的可能性。该方法可用于政府为其机队购买飞机做出决策,并识别具有高破坏敏感性的飞机关键部件,以便军用飞机制造商引入适当的修改。
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来源期刊
Aviation
Aviation ENGINEERING, AEROSPACE-
CiteScore
2.40
自引率
10.00%
发文量
20
审稿时长
15 weeks
期刊介绍: CONCERNING THE FOLLOWING FIELDS OF RESEARCH: ▪ Flight Physics ▪ Air Traffic Management ▪ Aerostructures ▪ Airports ▪ Propulsion ▪ Human Factors ▪ Aircraft Avionics, Systems and Equipment ▪ Air Transport Technologies and Development ▪ Flight Mechanics ▪ History of Aviation ▪ Integrated Design and Validation (method and tools) Besides, it publishes: short reports and notes, reviews, reports about conferences and workshops
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