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Development of a Semi-Span Test Capability at the National Transonic Facility

机译:国家跨音速设施的半跨度测试能力的发展

摘要

A need for low-speed, high Reynolds number test capabilities has been identified for the design and development of advanced subsonic transport high-lift systems. In support of this need, multiple investigations have been conducted in the National Transonic Facility (NTF) at the NASA Langley Research Center to develop a semi-span testing capability that will provide the low-speed, flight Reynolds number data currently unattainable using conventional sting-mounted, full-span models. Although a semi-span testing capability will effectively double the Reynolds number capability over full-span models, it does come at the expense of contending with the issue of the interaction of the flow over the model with the windtunnel wall boundary layer. To address this issue the size and shape of the semi-span model mounting geometry have been investigated, and the results are presented herein. The cryogenic operating environment of the NTF produced another semi-span test technique issue in that varying thermal gradients have developed on the large semi-span balance. The suspected cause of these thermal gradients and methods to eliminate them are presented. Data are also presented that demonstrate the successful elimination of these varying thermal gradients during cryogenic operations.
机译:已经确定了对低速,高雷诺数测试功能的需求,以设计和开发先进的亚音速运输高升力系统。为了满足这一需求,美国国家航空航天局兰利研究中心的国家跨音速设施(NTF)进行了多次调查,以开发一种半跨度测试功能,该功能将提供使用常规conventional击无法获得的低速飞行雷诺数数据安装的全跨度模型。尽管半跨度测试能力将使雷诺数能力比全跨度模型有效地翻倍,但这确实是以解决模型上的流与风洞壁边界层相互作用的问题为代价的。为了解决这个问题,已经研究了半跨度模型安装几何形状的大小和形状,并在此介绍了结果。 NTF的低温运行环境产生了另一个半跨度测试技术问题,因为在大的半跨度平衡上已经出现了变化的热梯度。介绍了这些热梯度的可疑原因以及消除它们的方法。还提供了数据,证明了在低温操作过程中成功消除了这些变化的热梯度。

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