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Preliminary design of a supersonic Short Takeoff and Vertical Landing (STOVL) fighter aircraft

机译:超音速短起飞和垂直着陆(STOVL)战斗机的初步设计

摘要

The preliminary design study of a supersonic Short Takeoff and Vertical Landing (STOVL) fighter is presented. A brief historical survey of powered lift vehicles was presented, followed by a technology assessment of the latest supersonic STOVL engine cycles under consideration by industry and government in the U.S. and UK. A survey of operational fighter/attack aircraft and the modern battlefield scenario were completed to develop, respectively, the performance requirements and mission profiles for the study. Three configurations were initially investigated with the following engine cycles: a hybrid fan vectored thrust cycle, a lift+lift/cruise cycle, and a mixed flow vectored thrust cycle. The lift+lift/cruise aircraft configuration was selected for detailed design work which consisted of: (1) a material selection and structural layout, including engine removal considerations, (2) an aircraft systems layout, (3) a weapons integration model showing the internal weapons bay mechanism, (4) inlet and nozzle integration, (5) an aircraft suckdown prediction, (6) an aircraft stability and control analysis, including a takeoff, hover, and transition control analysis, (7) a performance and mission capability study, and (8) a life cycle cost analysis. A supersonic fighter aircraft with STOVL capability with the lift+lift/cruise engine cycle seems a viable option for the next generation fighter.
机译:提出了一种超音速短距起降战斗机的初步设计研究。介绍了对电动升降车的简要历史调查,然后对美国和英国的行业和政府正在考虑的最新超音速STOVL发动机循环进行技术评估。完成了对战斗机/攻击机和现代战场情景的调查,以分别制定研究的性能要求和任务概况。最初使用以下发动机循环研究了三种配置:混合风扇矢量推力循环,升力+升/巡航循环和混合流矢量推力循环。选择了升力+升力/巡航飞机的配置用于详细的设计工作,包括:(1)材料选择和结构布局,包括发动机拆卸注意事项;(2)飞机系统布局;(3)武器集成模型,显示了内部武器舱机制,(4)进气口和喷嘴的集成,(5)飞机起降预测,(6)飞机稳定性和控制分析,包括起飞,悬停和过渡控制分析,(7)性能和任务能力研究,以及(8)生命周期成本分析。具有STOVL功能并具有升力+升力/巡航发动机循环的超音速战斗机似乎是下一代战斗机的可行选择。

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