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Stereo Photogrammetry Measurements of the Position and Attitude of a Nozzle-plume/Shock-wave Interaction Model in the NASA Ames 9- by 7- Ft Supersonic Wind Tunnel

机译:立体摄影测量在NASA Ames 9×7英尺超音速风洞中的喷嘴-泡沫/冲击波相互作用模型的位置和姿态

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Stereo photogrammetry was used to measure the position and attitude of a slender body of revolution during nozzle-plume/shock-wave interaction tests in the NASA Ames 9- by 7-Ft Supersonic Wind Tunnel. The model support system was designed to allow the model to be placed at many locations in the test section relative to a pressure rail on one sidewall. It included a streamwise traverse as well as a thin blade that offset the model axis from the sting axis. With these features the support system was more flexible than usual resulting in higher-than-usual uncertainty in the position and attitude of the model. Also contributing to this uncertainty were the absence of a balance, so corrections for sting deflections could not be applied, and the "wings-vertical" orientation of the model, which precluded using a gravity-based accelerometer to measure pitch angle. Therefore, stereo photogrammetry was chosen to provide independent measures of the model position and orientation. This paper describes the photogrammetry system and presents selected results from the test.
机译:在NASA Ames 9-by 7-Ft超音速风洞中,在喷嘴-水珠/冲击波相互作用测试中,立体摄影测量法用于测量细长的旋转体的位置和姿态。模型支持系统设计为允许将模型相对于一个侧壁上的压力导轨放置在测试部分的许多位置。它包括沿河流方向移动的细叶片和使模型轴偏离from轴的细叶片。具有这些功能的支持系统比平时更灵活,从而导致模型位置和姿态的不确定性高于平常。造成这种不确定性的另一个原因是不存在平衡,因此无法应用对st挠度的校正,以及模型的“垂直于机翼”的方向,因此无法使用基于重力的加速度计来测量俯仰角。因此,选择了立体摄影测量法以提供对模型位置和方向的独立测量。本文介绍了摄影测量系统,并提供了从测试中选择的结果。

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