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Feasibility of Using Dynamically Oscillating Surfaces to Control Tollmien-Schlichting Waves.

机译:使用动态振荡表面控制Tollmien-Schlichting波的可行性。

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摘要

This work characterizes and controls Tollmien-Schlichting (T-S) waves by means of Piezoelectrically-Driven Oscillating Surface (PDOS) actuators, using Particle Image Velocimetry (PIV). A parametric study of PDOS actuator design parameters was conducted and a 0.79 mm thick rubber surface with a 12.7 mm diameter circular dimple, a cavity height of 2 mm, and a neck height of 2 mm was selected for implementation in T-S wave control over a flat plate. Two circular PDOS actuators were used to excite and control the most amplified frequency of the T-S wave on a flat plate. The actuators were placed at the mid-span of a flat plate at two streamwise locations of x/L = 0.18 and x/L = 0.28 downstream from the leading edge, where the free-stream velocity was U = 16 m/s. The upstream actuator was used to excite and phase-lock the T-S waves at an excitation frequency of ƒact = 250 Hz (corresponding to the most amplified frequency of the T-S wave, based on linear stability analysis), and the downstream PDOS was used to mitigate the T-S wave by driving it at an anti-phase with the appropriate amplitude. Time- and phase-averaged flow fields were acquired at two downstream interrogation domains. The first window of data, taken in between the two PDOS actuators, explored the effect of the excitation amplitude on the magnitude of the excited T-S waves. At the second window, located downstream of both PDOS actuators, the simultaneous activation of both actuators at an appropriate phase shift and amplitudes resulted in a significant reduction or augmentation of the T-S waves, depending on the phase shift between the two actuators.
机译:这项工作通过使用粒子图像测速(PIV)的压电驱动振荡面(PDOS)致动器来表征和控制Tollmien-Schlichting(T-S)波。进行了PDOS执行器设计参数的参数研究,并选择了0.79毫米厚的橡胶表面,直径为12.7毫米的圆形凹窝,空腔高度为2毫米,颈部高度为2毫米,以用于在平面上进行TS波控制盘子。使用两个圆形的PDOS执行器来激发和控制平板上T-S波的最大放大频率。将执行器放置在平板的中跨,位于前缘下游的两个流向位置x / L = 0.18和x / L = 0.28,自由流速度为U = 16 m / s。上游致动器用于以ƒact= 250 Hz(对应于TS波的最大放大频率,基于线性稳定性分析)的激励频率来激发和锁相TS波,而下游PDOS用于缓解通过以适当的幅度反相驱动TS波。在两个下游询问域中获取了时间平均和相位平均的流场。在两个PDOS执行器之间获取的第一个数据窗口探讨了激励幅度对被激励T-S波幅度的影响。在位于两个PDOS致动器下游的第二个窗口处,两个致动器在适当的相移和振幅下的同时激活导致T-S波的显着减小或增大,这取决于两个致动器之间的相移。

著录项

  • 作者

    Dell'Orso, Haley.;

  • 作者单位

    Rensselaer Polytechnic Institute.;

  • 授予单位 Rensselaer Polytechnic Institute.;
  • 学科 Mechanical engineering.;Aerospace engineering.
  • 学位 M.S.
  • 年度 2016
  • 页码 53 p.
  • 总页数 53
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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