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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Control of wake vortex street behind a square cylinder using surface travelling waves
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Control of wake vortex street behind a square cylinder using surface travelling waves

机译:APS-APS流体动力学分部第70届年会-事件-使用表面行波控制方筒后面的尾流涡街

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A novel travelling wave (TW) flow separation control strategy is developed to suppress the adverse downstream wake effects on a square cylinder of side, L, at low Reynolds number (Re$=$100). Our 2D numerical simulations suggest that when the downstream cylinder surface carries appropriately designed TWs, in the presence of an incoming flow of velocity U, a series of small scale vortices are formed in the trough regions of TWs. These small vortices inhibit momentum transfer between the thin fluid layer adjacent to the wall and the freestream. Consequently, the von-Karman vortex street behind the cylinder is suppressed and more than 70{%} reduction in drag force and complete elimination of fluctuating lift force is observed. The optimum TW control mechanism is determined by conducting a series of numerical simulations with various wave speeds (c) and wave amplitudes (A) for a fixed wave number (N$=$L/$lambda =$4, where $lambda $ is the wavelength). Total suppression of the von-Karman vortex street is achieved when c/U is greater than 5, whereas only limited suppression of wake effects is seen at lesser c/U. The effect of wave amplitude is insignificant in the range of A/L$=$0.02 to 0.03. Energy efficiency to generate TW is also investigated in this study.
机译:开发了一种新颖的行波(TW)流分离控制策略,以在低雷诺数(Re $ = $ 100)时抑制对边L的方圆柱体产生的不利下游尾流影响。我们的二维数值模拟表明,当下游圆柱体表面承载适当设计的TWs时,在存在速度U的传入流的情况下,在TWs的波谷区域中会形成一系列小规模的涡旋。这些小的旋涡抑制了与壁相邻的薄流体层与自由流之间的动量传递。因此,抑制了圆柱体后面的von-Karman涡街,并观察到阻力减小了70%以上,并且完全消除了波动的升力。最佳TW控制机制是通过对固定波数(N $ = $ L / $ lambda = $ 4,其中$ lambda $是波长)。当c / U大于5时,将完全抑制von-Karman涡街,而在较低c / U时只能看到有限的唤醒效应抑制。在A / L $ = $ 0.02至0.03的范围内,波幅的影响微不足道。这项研究还研究了产生TW的能源效率。

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