Turbulent drag reduction using an array of piezo-ceramic actuators

W. G. Zhang, Y. Zhou, H. L. Bai

科研成果: 书/报告/会议事项章节会议稿件同行评审

1 引用 (Scopus)

摘要

An experimental investigation on active control of turbulent boundary layer (TBL), aiming at reducing skin-friction drag, has been conducted in a wind tunnel at Re θ = 1,000, based on the free-stream velocity (U ) and momentum thickness (θ). A spanwise-aligned piezo-ceramic (PZT) actuator array, consisting of 16 elements, was employed to generate wall-normal oscillations and, given a phase shift between two adjacent actuators, a transverse travelling wave along the wall surface. A wide range of parameters were examined, including the wavelength (41.6 ∼ ∞ wall units), oscillation frequency (0.13 ∼ 0.65 wall units) and amplitude (0.83 ∼ 2.77 wall units). Local skin-friction drag can be reduced as much as 50% at a location of 17 wall units downstream of the actuator tip, based on the change of hotwire-measured slope of mean streamwise velocity profile in the near-wall region, when the actuator array worked at a wavelength, oscillation amplitude and frequency of 416, 1.94 and 0.39, respectively, all in wall units. The near-wall flow structures with and without control were extensively measured using laser-illuminated smoke-wire flow visualization, hotwire and hot-film, and were compared with each other. Under the optimum control parameters, large-scale coherent structures were disturbed tremendously, resulting in comparatively steady small-scale structures. Moreover, results of two-point cross-correlation between wall shear stress and streamwise velocity reveal that near-wall shear layers were impaired significantly and pushed upward slightly, toward skin-friction drag reduction, during the perturbations.

源语言英语
主期刊名17th Australasian Fluid Mechanics Conference 2010
75-78
页数4
出版状态已出版 - 2010
已对外发布
活动17th Australasian Fluid Mechanics Conference 2010, 17AFMC - Auckland, 新西兰
期限: 5 12月 20109 12月 2010

出版系列

姓名17th Australasian Fluid Mechanics Conference 2010

会议

会议17th Australasian Fluid Mechanics Conference 2010, 17AFMC
国家/地区新西兰
Auckland
时期5/12/109/12/10

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