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Unified Instrumentation: Examining the Simultaneous Application of Advanced Measurement Techniques for Increased Wind Tunnel Testing Capability

机译:统一仪器:检验先进测量技术的同时应用,以提高风洞测试能力

摘要

A Unified Instrumentation Test examining the combined application of Pressure Sensitive Paint, Projection Moire Interferometry, Digital Particle Image Velocimetry, Doppler Global Velocimetry, and Acoustic Microphone Array has been conducted at the NASA Langley Research Center. The fundamental purposes of conducting the test were to: (a) identify and solve compatibility issues among the techniques that would inhibit their simultaneous application in a wind tunnel, and (b) demonstrate that simultaneous use of advanced instrumentation techniques is feasible for increasing tunnel efficiency and identifying control surface actuation / aerodynamic reaction phenomena. This paper provides summary descriptions of each measurement technique used during the Unified Instrumentation Test, their implementation for testing in a unified fashion, and example results identifying areas of instrument compatibility and incompatibility. Conclusions are drawn regarding the conditions under which the measurement techniques can be operated simultaneously on a non-interference basis. Finally, areas requiring improvement for successfully applying unified instrumentation in future wind tunnel tests are addressed.
机译:NASA兰利研究中心已经进行了统一仪器测试,以检查压敏涂料,投影莫尔干涉仪,数字粒子图像测速仪,多普勒全局测速仪和声学麦克风阵列的组合应用。进行测试的基本目的是:(a)识别和解决技术之间的兼容性问题,这些问题将阻止它们同时在风洞中应用;(b)证明同时使用先进的仪表技术对于提高隧道效率是可行的。并识别控制面致动/空气动力反应现象。本文提供了在统一仪器测试中使用的每种测量技术的简要说明,以统一方式进行测试的实现方式以及确定仪器兼容性和不兼容性领域的示例结果。得出有关在不干扰的基础上同时操作测量技术的条件的结论。最后,解决了需要改进的领域,以便在将来的风洞测试中成功应用统一的仪器。

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