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High-Reynolds Number Active Blowing Semi-Span Force Measurement System Development

机译:高雷诺数主动吹气半跨力测量系统开发

摘要

Recent wind-tunnel tests at the NASA Langley Research Center National Transonic Facility utilized high-pressure bellows to route air to the model for evaluating aircraft circulation control. The introduction of these bellows within the Sidewall Model Support System significantly impacted the performance of the external sidewall mounted semi-span balance. As a result of this impact on the semi-span balance measurement performance, it became apparent that a new capability needed to be built into the National Transonic Facility s infrastructure to allow for performing pressure tare calibrations on the balance in order to properly characterize its performance under the influence of static bellows pressure tare loads and bellows thermal effects. The objective of this study was to design both mechanical calibration hardware and an experimental calibration design that can be employed at the facility in order to efficiently and precisely perform the necessary loadings in order to characterize the semi-span balance under the influence of multiple calibration factors (balance forces/moments and bellows pressure/temperature). Using statistical design of experiments, an experimental design was developed allowing for strategically characterizing the behavior of the semi-span balance for use in circulation control and propulsion-type flow control testing at the National Transonic Facility.
机译:最近在美国国家航空航天局兰利研究中心国家跨音速工厂进行的风洞测试利用高压波纹管将空气引导至模型,以评估飞机的循环控制。这些波纹管在侧壁模型支持系统中的引入极大地影响了安装在外部侧壁上的半跨天平的性能。由于对半跨度天平测量性能的影响,很明显,需要在国家跨音速设施的基础架构中内置一项新功能,以便对天平执行压力皮重校准,以正确表征其性能在静态波纹管压力皮重载荷和波纹管热效应的影响下。这项研究的目的是设计机械校准硬件和可在工厂使用的实验校准设计,以便有效,精确地执行必要的载荷,以表征在多个校准因子影响下的半跨度平衡(平衡力/力矩和波纹管压力/温度)。利用实验的统计设计,开发了一种实验设计,可以从战略上表征半跨度天平的性能,以用于国家跨音速设施的循环控制和推进式流量控制测试。

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