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Analysis of flow over a circular cylinder fitted with helical strakes

机译:用螺旋轨迹配合的圆柱体流动分析

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The effectiveness of the helical strakes in suppressing the vortex-induced vibration (VIV) of a rigid cylinder is investigated by providing a three start helical strakes around a circular cylinder at two Reynolds numbers (100&28000). While the effect of helical strakes on suppression of vortex shedding has been studied extensively, the mechanism of VTV mitigation using helical strakes is much less well documented in the literature. In the present study, a rigid circular cylinder of diameter d=40mm attached with three-strand helical strakes of dimensions of lOd in pitch and 0.15d in height was tested by simulation. To numerically simulate vortex shedding, CFD is used to calculate the unsteady flow that arises from a fluid moving past an obstruction. A computational grid independence study has been done for flow over the circular cylinder and the grid resolution in which there is faster recovery of coefficient of lift is taken for the simulation. The contours of static pressure, velocity magnitude and vorticity magnitude and the hydrodynamic coefficients Cd and CL are obtained. It is found that, as expected, the straked cylinder has a higher drag coefficient in comparison with a smooth bare cylinder. The helical strakes can reduce VIV by about 99%.
机译:通过在两个雷诺数(100&28000)周围提供三个起始螺旋轨迹,研究了螺旋轨迹抑制涡旋诱导的振动(VIV)的涡旋诱导的振动(VIV)。虽然已经广泛研究了螺旋轨迹对涡旋脱落的抑制的影响,但在文献中,使用螺旋轨迹的VTV缓解机制得多。在本研究中,通过仿真测试了在间距的三链螺旋轨迹的直径d = 40mm的刚性圆柱体,并通过模拟测试。为了数值模拟Vortex Shedding,CFD用于计算出现在流过障碍物的流体中产生的不稳定流动。已经在圆筒上流动进行了计算网格独立性研究,并且对仿真进行了更快的升力恢复的网格分辨率。获得静压,速度幅度和涡度幅度和流体动力系数CD和CL的轮廓。结果发现,如预期的那样,与光滑的裸筒相比,剥筒具有更高的阻力系数。螺旋轨迹可以减少VIV约99%。

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