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Norwegian Deepwater Program: Damping of Vortex-Induced Vibrations

机译:挪威深水计划:涡旋振动的阻尼

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Vortex-induced vibration (VIV) of a long riser in sheared current is often considered as an energy balance problem: Excitation forces in the power-in region add an equal amount of energy to the system as is dissipated by damping forces outside this region and by structural damping. A riser may have different excitation and damping regions depending on the actual oscillation frequency, cross-section properties and local flow velocity. A damping model must hence be able to handle higher and lower flow velocities than the excitation velocity range. in this paper the fluid damping models proposed by Venugopal are compared tih the experiments conducted by Gopalkrishnan and Vikestad. The results show that the models are conservative at high and low reduced velocities.
机译:剪切电流中长立管的涡激振动(VIV)通常被认为是能量平衡问题:上电区域中的激励力为系统添加的能量与该区域外的阻尼力所消耗的能量相等,并且通过结构阻尼。立管可以具有不同的激励和阻尼区域,具体取决于实际的振荡频率,横截面特性和局部流速。因此,阻尼模型必须能够处理高于和低于激励速度范围的流速。在本文中,将Venugopal提出的流体阻尼模型与Gopalkrishnan和Vikestad进行的实验进行了比较。结果表明,该模型在较高和较低的降低速度下都是保守的。

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