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Control Surface Interaction Effects of the Active Aeroelastic Wing Wind Tunnel Model

机译:主动气动弹性翼风洞模型的控制面相互作用效应

摘要

This paper presents results from testing the Active Aeroelastic Wing wind tunnel model in NASA Langley s Transonic Dynamics Tunnel. The wind tunnel test provided an opportunity to study aeroelastic system behavior under combined control surface deflections, testing for control surface interaction effects. Control surface interactions were observed in both static control surface actuation testing and dynamic control surface oscillation testing. The primary method of evaluating interactions was examination of the goodness of the linear superposition assumptions. Responses produced by independently actuating single control surfaces were combined and compared with those produced by simultaneously actuating and oscillating multiple control surfaces. Adjustments to the data were required to isolate the control surface influences. Using dynamic data, the task increases, as both the amplitude and phase have to be considered in the data corrections. The goodness of static linear superposition was examined and analysis of variance was used to evaluate significant factors influencing that goodness. The dynamic data showed interaction effects in both the aerodynamic measurements and the structural measurements.
机译:本文介绍了在NASA Langley跨音速动力学隧道中测试主动气动弹性翼风洞模型的结果。风洞测试为研究组合控制面挠度下的空气弹性系统行为提供了机会,可以测试控制面相互作用的影响。在静态控制表面致动测试和动态控制表面振荡测试中均观察到控制表面相互作用。评估相互作用的主要方法是检查线性叠加假设的优劣。将通过独立致动单个控制面产生的响应进行组合,并将其与通过同时致动和振荡多个控制面产生的响应进行比较。需要对数据进行调整以隔离控制面影响。使用动态数据,任务增加了,因为在数据校正中必须同时考虑幅度和相位。检查静态线性叠加的优度,并使用方差分析评估影响该优度的重要因素。动态数据显示了在空气动力学测量和结构测量中的相互作用效应。

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    Heeg Jennifer;

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  • 年度 2006
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