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Generation of vertical gusts in a transonic wind tunnel

机译:在跨音速风洞中产生垂直阵风

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摘要

This article reports on the qualification of a gust generator device in a transonic wind tunnel. A vanning apparatus has been installed in the contraction of the S3Ch transonic wind tunnel at the ONERA Meudon center in order to generate up and down air movements in the test section. The apparatus has been tested in a range of Strouhal number based on frequency and vane chord up to 0.15 and in a range of Mach number between 0.3 and 0.73. The amplitude of the gusts has been characterized by a fast-response two-hole pressure probe and phase-averaged PIV. The system delivers vertical velocity amplitude of 0.5 % of the freestream velocity at transonic speeds. For a constant vane oscillation angle, the gust strength is found to increase with the Strouhal and the Mach numbers. The gust exhibit a satisfying uniformity and a quasi-sinusoidal waveform. A simple dynamic point vortex model of the oscillating vanes and of the downstream wake has been developed in order to (1) compare the experimental results and (2) enrich the description of the flow induced by the gusts. In particular, the model is used to analyze the detrimental effect of the upper and lower walls. This simple unsteady model gives a valuable prediction of the amplitude of the gust obtained in the tunnel and the workable frequency range permitted by the present apparatus.
机译:本文报告了跨音速风洞中阵风发生器设备的合格性。在ONERA Meudon中心的S3Ch跨音速风洞的收缩处已安装了翻板设备,以在测试区域中产生向上和向下的空气运动。该设备已经在基于频率的Strouhal数范围内以及高达0.15的叶片弦上进行了测试,并且在0.3至0.73的马赫数范围内进行了测试。阵风的幅度已通过快速响应的两孔压力探头和相位平均PIV进行了表征。该系统在跨音速下的垂直速度幅度为自由流速度的0.5%。对于恒定的叶片振荡角,发现阵风强度随Strouhal和Mach数增加。阵风表现出令人满意的均匀性和准正弦波形。为了(1)比较实验结果和(2)丰富由阵风引起的流动的描述,已经建立了振荡叶片和下游尾流的简单动态点涡流模型。特别是,该模型用于分析上下壁的有害影响。这个简单的不稳定模型给出了在隧道中获得的阵风的振幅和本装置允许的可工作频率范围的有价值的预测。

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