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Lessons in the Design and Characterization Testing of the Semi-Span Super-Sonic Transport (S4T) Wind-Tunnel Model

机译:半跨超音速运输(S4T)风洞模型的设计和特性测试的经验教训

摘要

This paper focuses on some of the more challenging design processes and characterization tests of the Semi-Span Super-Sonic Transport (S4T)-Active Controls Testbed (ACT). The model was successfully tested in four entries in the National Aeronautics and Space Administration Langley Transonic Dynamics Tunnel to satisfy the goals and objectives of the Fundamental Aeronautics Program Supersonic Project Aero-Propulso-Servo-Elastic effort. Due to the complexity of the S4T-ACT, only a small sample of the technical challenges for designing and characterizing the model will be presented. Specifically, the challenges encountered in designing the model include scaling the Technology Concept Airplane to model scale, designing the model fuselage, aileron actuator, and engine pylons. Characterization tests included full model ground vibration tests, wing stiffness measurements, geometry measurements, proof load testing, and measurement of fuselage static and dynamic properties.
机译:本文重点介绍了半跨超音速运输(S4T)-主动控制测试台(ACT)的一些更具挑战性的设计过程和特性测试。该模型已在美国国家航空航天局Langley跨音速动力学隧道的四个入口中成功进行了测试,以满足基本航空计划超音速项目航空—推进—伺服—弹力研究的目的。由于S4T-ACT的复杂性,将仅展示设计和表征模型的一小部分技术挑战。具体而言,设计模型时遇到的挑战包括将“技术概念飞机”缩放到模型比例,设计模型机身,副翼执行器和发动机吊架。表征测试包括完整模型的地面振动测试,机翼刚度测量,几何尺寸测量,标准载荷测试以及机身静态和动态特性的测量。

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