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Evaluation of flip-flop jet nozzles for use as practical excitation devices

机译:评估用作实际激励装置的触发器喷嘴

摘要

This paper describes the flowfield characteristics of the flip-flop jet nozzle and the potential for using this nozzle as a practical excitation device. It appears from the existing body of published information that there is a lack of data on the parameters affecting the operation of such nozzles and on the mechanism of operation of these nozzles. An attempt is made in the present work to study the important parameters affecting the operation and performance of a flip-flop jet nozzle. Measurements were carried out to systematically assess the effect of varying the nozzle pressure ratio (NPR) as well as the length and volume of the feedback tube on the frequency of oscillation of this device. Flow visualization was used to obtain a better understanding of the jet flowfield and of the processes occurring within the feedback tube. The frequency of oscillation of the flip-flop jet depended significantly on the feedback tube length and volume as well as on the nozzle pressure ratio. In contrast, the coherent velocity perturbation levels did not depend on the above mentioned parameters. The data presented in this paper would be useful for modeling such flip-flop excitation devices that are potentially useful for controlling practical shear flows.
机译:本文介绍了触发器喷嘴的流场特性,以及将该喷嘴用作实际激励装置的潜力。从公开的信息的现有主体看来,缺乏关于影响此类喷嘴的操作的参数以及这些喷嘴的操作机理的数据。在本工作中,试图研究影响触发器喷嘴的操作和性能的重要参数。进行了测量以系统地评估改变喷嘴压力比(NPR)以及反馈管的长度和体积对该设备振荡频率的影响。流动可视化用于更好地了解射流场和反馈管内发生的过程。触发器射流的振荡频率在很大程度上取决于反馈管的长度和体积以及喷嘴的压力比。相反,相干速度摄动水平不取决于上述参数。本文中提供的数据将有助于对此类触发器激励设备进行建模,这些触发器对于控制实际剪切流可能很有用。

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