首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >EXPERIMENTAL STUDY ABOUT THE INFLUENCE OF THE FREE END EFFECTS ON VORTEX-INDUCED VIBRATION OF FLOATING CYLINDER WITH LOW ASPECT OF RATIO
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EXPERIMENTAL STUDY ABOUT THE INFLUENCE OF THE FREE END EFFECTS ON VORTEX-INDUCED VIBRATION OF FLOATING CYLINDER WITH LOW ASPECT OF RATIO

机译:自由端效应对低比浮动油缸涡流诱发振动影响的实验研究

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Experiments regarding free-end effects on vortex-induced vibration (VIV) of floating circular cylinders with low aspect ratio were carried out in a towing tank Four cylinders with low aspect of ratio, L/D = 2 (Length /Diameter) were tested with different free end corner shape types, namely by the relation between chamfer rounding radius (r) divided by the radius of cylinder (R) (r/R = 0.0, 0.25, 0.5 and 1.0). For the initial case, r/R = 0.0 represents flat tip and r/R = 1.0 the hemispherical tip. The aims were to understand the effect of different free-end types on VIV behavior of cylinders. The floating circular cylinders, i.e. unit mass ratio m~* = 1(structural mass/displaced fluid mass) were elasti-cally supported by a set of linear springs to provide low structural damping on the system and allow six degrees of freedom. The range of Reynolds number covered 3,000 ≤ Re ≤ 20,000. To conclude, cylinder with r/R=0.25, shows lower amplitudes in transverse direction. The same occurs for the cylinder r/R = 0, but for amplitudes of vibration in in-line direction. Behaviors of the vibration frequencies in in-line and transverse direction don't have significantly differences. Regarding force coefficient, flat tip cylinder (r/R=0) presents higher values compared to the others however, for the lift coefficient, results converge in similar values for the same velocities that were observed higher transverse amplitudes. The visualization experiments show an expressive reduction of the recirculation bubble for r/R = 0.5 model compared with the flat tip, can therefore justify the lower values for this model obtained in draft amplitudes and drag coefficient compared with the flat tip model.
机译:在拖曳罐中进行了有关自由端对低长宽比的浮动圆柱涡流诱发振动(VIV)的影响的实验。测试了四个低长宽比的圆柱体,L / D = 2(长度/直径),不同的自由端角形状类型,即倒角倒圆半径(r)除以圆柱半径(R)之间的关系(r / R = 0.0、0.25、0.5和1.0)。对于初始情况,r / R = 0.0表示平坦尖端,而r / R = 1.0表示半球形尖端。目的是了解不同的自由端类型对气缸的VIV行为的影响。浮动圆柱体,即单位质量比m〜* = 1(结构质量/位移流体质量),由一组线性弹簧弹性地支撑,以在系统上提供低结构阻尼,并允许六个自由度。雷诺数范围为3,000≤Re≤20,000。总而言之,r / R = 0.25的圆柱在横向方向上显示出较低的幅度。对于汽缸r / R = 0会发生相同的情况,但对于直列方向的振动幅度也会发生这种情况。在线和横向振动频率的行为没有明显差异。关于力系数,扁平尖端圆柱体(r / R = 0)与其他相比呈现出更高的值,但是,对于升力系数,对于相同的速度,结果收敛于相似的值,并且观察到更高的横向振幅。可视化实验表明,与平头相比,r / R = 0.5模型的再循环气泡明显减少,因此可以证明该模型在拔模幅度和阻力系数方面获得的较低值与平头模型相比是合理的。

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