首页> 外文会议>ASME/JSME/KSME Joint Fluids Engineering Conference >EXPERIMENTAL STUDY ON DRAG REDUCTION EFFECT WITH TRAVELING WAVE CONTROL USING PIV MEASUREMENT
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EXPERIMENTAL STUDY ON DRAG REDUCTION EFFECT WITH TRAVELING WAVE CONTROL USING PIV MEASUREMENT

机译:PIV测量的行波控制减阻效果的实验研究

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The influence of the traveling wave control on flow fields is evaluated by experiments using a traveling wavy wall in a fully developed turbulent dual channel flow. We develop a traveling wave generator using a rubber sheet and piezoelectric actuator as a vibration source. A single piezoelectric actuator is installed in the upstream position of the channel. Experiments are performed using traveling waves attenuating in the downstream direction. With traveling wave control, effective drag reduction is confirmed when bulk Reynolds number is within the range of 2000 < Re_b < 6000. For Re_b = 3000, the maximum drag reduction rate of 10 % is obtained. In order to evaluate a relationship between the amplitude attenuation of traveling wave and drag reduction effect, particle image velocimetry (PIV) at multiple positions is performed. Increase of drag is observed near the vibration source whereas drag decreased at other positions. Reduction of random component of Reynolds shear stress can be ascribed to the drag reduction.
机译:行波控制对流场的影响是通过在完全展开的湍流双通道流中使用行波壁进行的实验来评估的。我们开发了一种使用橡胶板和压电致动器作为振动源的行波发生器。单个压电致动器安装在通道的上游位置。使用沿下游方向衰减的行波进行实验。通过行波控制,当本体雷诺数在2000

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