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Numerical studies on passive suppression of one and two degrees-of-freedom vortex-induced vibrations using a rotative non-linear vibration absorber

机译:旋转非线性减振器被动抑制一自由度和二自由度涡激振动的数值研究

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This paper presents a numerical investigation on the use of a rotative non-linear vibration absorber (NVA) as a passive suppressor for the vortex-induced vibrations phenomenon (VIV). The structural model consists of rigid cylinders mounted on elastic supports and the hydrodynamic loads are calculated using phenomenological models. The NVA is defined as a rigid bar, fitted with a tip-mass and hinged to the cylinder. Energy is dissipated by means of a linear dashpot linked to the bar.Two major groups are studied, the first one being that in which the cylinder is constrained to oscillate in the cross-wise direction (1-dof VIV). The second group, herein named 2-dof VIV, refers to the condition in which simultaneous oscillations in the cross-wise and in-line directions are allowed.Characteristic oscillation amplitude curves are obtained as functions of reduced velocities covering the lock-in for different values of the control parameters that define the NVA (namely, its mass, radius and dashpot constant). In addition, quantitative and qualitative aspects of cylinder and suppressor responses are explored in the form of colormaps defined in the space of control parameters for three specific reduced velocities.The systematic study shows that the mass parameter of the NVA has more influence on the VIV suppression for both 1-dof VIV and 2-dof VIV. In general, the suppression has proved to be greater in the 1-dof VIV case.
机译:本文介绍了使用旋转非线性减振器(NVA)作为涡流感应振动现象(VIV)的被动抑制器的数值研究。结构模型由安装在弹性支撑上的刚性圆柱体组成,并使用现象学模型计算流体动力载荷。 NVA定义为刚性杆,配有尖端质量并铰接到圆柱体。能量通过连接到杆的线性减震器消散。研究了两个主要组,第一个主要组是其中圆柱受约束沿横向振动的VIV(1-dof)。第二组,在本文中称为2-dof VIV,是指允许在横向和直列方向上同时振荡的条件。获得的特征振荡幅度曲线是降低速度的函数,涵盖了不同情况下的锁定定义NVA的控制参数的值(即其质量,半径和阻尼常数)。此外,以三种特定的降低速度在控制参数空间中定义的颜色图的形式探索了汽缸和抑制器响应的定量和定性方面。系统研究表明NVA的质量参数对VIV抑制的影响更大适用于1-dof VIV和2-dof VIV。总的来说,在1-dof VIV情况下,抑制作用更大。

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