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Relationship between Transonic Cavity Tones and Flowfield Dynamics using Pulse-Burst PIV

机译:脉冲爆裂PIV跨音速腔音与流场动力学之间的关系

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Mach 0.94 flow over a cavity having a length-to-depth ratio of five was explored using time-resolved particle image velocimetry (TR-PIV) with a burst-mode laser. The data were used to probe the resonance dynamics of the first three cavity (Rossiter) tones. Bandpass filtering was employed to reveal the coherent flow structure associated with each tone. The first Rossiter mode was associated with a propagation of large scale structures in the recirculation region, while the second and third modes contained organized structures consistent with converting vortical disturbances. The wavelengths of the second and third modes were quite similar to those observed in a previous study by the current authors using phase-averaged PIV. Convective velocities computed using cross correlations in the unfiltered data showed the convective velocity increased with streamwise distance in a fashion similar to other studies. Convective velocities during cavity resonance were found to decrease with decreasing mode number, consistent with the modal activity residing in lower portions of the cavity in regions of lower local mean velocities. The convective velocity fields associated with resonance exhibited a streamwise periodicity consistent with wall-normal undulations in the resonant velocity fields; however, additional work is required to confirm this is not an analysis artifact.
机译:使用具有脉冲模式激光的时间分辨粒子图像测速仪(TR-PIV),研究了0.94马赫的长径比为5的腔体上的流动。数据用于探测前三个腔(Rossiter)音的共振动力学。带通滤波被用来揭示与每个音调相关的相干流动结构。第一种Rossiter模式与大型结构在再循环区域的传播有关,而第二种模式和第三种模式则包含与转换涡旋扰动一致的有组织结构。第二和第三种模式的波长与当前作者使用相均PIV进行的先前研究中观察到的波长非常相似。使用未经过滤的数据中的互相关计算的对流速度显示,对流速度随流向距离的增加而增加,其方式与其他研究相似。发现腔共振期间的对流速度随模数的减少而降低,这与位于局部局部平均速度较低区域的腔下部中的模态活动一致。与共振有关的对流速度场呈现出与共振速度场中的壁法向波动相一致的流向周期性。但是,需要更多的工作来确认这不是分析工件。

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