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Calibration and comparison of VIV wake oscillator models for low mass ratio structures

机译:低质量比结构VIV唤醒振荡器型号的校准和比较

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摘要

In this work, Vortex-Induced Vibration (VIV) of a rigid cylinder on elastic supports is reviewed and modelled. We consider a cylinder moving both cross-flow and in-line subjected to fluid forces calculated as proposed in [1]. A suite of wake oscillator models is investigated with different types of nonlinear damping in the fluid equation, where sets of model coefficients are optimized for each variation of the nonlinear damping using the constrained nonlinear minimization. The calibration is based on the experimental data presented by Stappenbelt and Lalji [2]. The largest displacement amplitude is used as the main calibration criterion to determine empirical coefficients of the fluid equations. The frequency difference between the beginning of resonance evaluated from the base model [1] and the experimental data [2] is used as an additional coefficient for calibration. The developed models are cross-checked using four sources of published experimental data [3, 4, 5, 6]. This allows to identify the most suitable wake oscillator models which are applicable for a wide variety of experimental data. The main outcome of this research is a library of calibrated models describing fluid-structure interactions at low mass ratio. Specifically, it was shown that the Rayleigh damping is the most suitable for cross-flow equation, whereas the Van der Pol damping is preferable for in-line equation for these low mass ratio cases.
机译:在这项工作中,综述并建模了弹性支撑件上的刚性气缸的涡旋诱导的振动(VIV)。我们考虑一个气缸移动横流和型在[1]中所提出的流体力的内线。通过流体方程中的不同类型的非线性阻尼研究了一套尾脉振荡器模型,其中使用受约束的非线性最小化进行了针对非线性阻尼的每个变化进行了优化了一组模型系数。校准基于Stappenbelt和Lalji [2]呈现的实验数据。最大位移幅度用作确定流体方程的经验系数的主要校准标准。从基础模型[1]和实验数据[2]评估的谐振开始之间的频率差用作校准系数。开发模型使用已发布的实验数据的四个来源进行交叉检查[3,4,5,6]。这允许识别适用于各种实验数据的最合适的唤醒振荡器型号。该研究的主要结果是描述以低质量比的流体结构相互作用的校准模型库。具体地,示出了瑞利阻尼最适合于横流方程,而van der POL阻尼是用于这些低质量比例的线路方程。

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