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Enabling Advanced Wind-Tunnel Research Methods Using the NASA Langley 12-Foot Low Speed Tunnel

机译:使用美国宇航局兰利12英尺低速隧道实现先进的风洞研究方法

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Design of Experiment (DOE) testing methods were used to gather wind tunnel data characterizing the aerodynamic and propulsion forces and moments acting on a complex vehicle configuration with 10 motor-driven propellers, 9 control surfaces, a tilt wing, and a tilt tail. This paper describes the potential benefits and practical implications of using DOE methods for wind tunnel testing - with an emphasis on describing how it can affect model hardware, facility hardware, and software for control and data acquisition. With up to 23 independent variables (21 model & 2 tunnel) for some vehicle configurations, this recent test also provides an excellent example of using DOE methods to assess critical coupling effects in a reasonable timeframe for complex vehicle configurations. Results for an exploratory test using conventional angle of attack sweeps to assess aerodynamic hysteresis is summarized, and DOE results are presented for an exploratory test used to set the data sampling time for the overall test. DOE results are also shown for one production test characterizing normal force in the Cruise mode for the vehicle.
机译:实验设计(DOE)测试方法用于收集风洞数据,其特征在于用10个电动机驱动螺旋桨,9个控制表面,倾斜翼和倾斜尾部作用于复杂的车辆配置的空气动力学和推进力和时刻。本文介绍了使用DOE方法对风洞测试的潜在益处和实际意义 - 重点描述了它如何影响模型硬件,设施硬件和控制和数据采集软件。对于某些车辆配置,最多23个独立变量(21型型号和2个隧道),该最近的测试还提供了使用DOE方法来评估复杂车辆配置的合理时间范围内的关键耦合效应的优秀示例。结果,使用常规攻角扫描的探索性测试概述了评估空气动力滞后,并且展示了用于设置整体测试的数据采样时间的探索性测试的DOE结果。还显示了一个生产测试的DOE结果,其特征在于车辆的巡航模式中的正常力。

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