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A time domain prediction method for the vortex-induced vibrations of a flexible riser

机译:柔性立管涡激振动的时域预测方法

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摘要

In this paper, a time domain prediction method from experimental data is proposed for vortex-induced vibration (WV) of flexible risers. The nonlinear factors, couplings among axial tension, WV response in cross flow (CF) direction and the hydrodynamic force, have been taken into account in this method, with a simplified tension variation model and empirical hydrodynamic force model. The hydrodynamic force, including the excitation force in the excitation region and the damping force in the damping region are the function of excitation coefficients, non-dimensional WV amplitude and frequency based on vibration experiment data. Iterations are performed to achieve balances between the hydrodynamic forces and the WV responses of a riser. Moreover, a new added mass coefficient of 2.0 from model tests of flexible pipes is applied, where the predicted WV response frequencies reveal higher accuracy. Comparison between the predicted results and the experimental results under uniform flow of 2.8 m/s and shear flow of 2.0 m/s are conducted, which verifies the feasibility and reliability of the proposed method. In addition, by comparing the prediction results with and without coupling between axial tension and WV responses, it is found that this coupling effect is of importance to VIV prediction and can improve WV prediction accuracy, especially under the case of high flow velocity and high vibration mode.
机译:本文提出了一种基于实验数据的时域预测方法,用于柔性立管的涡激振动(WV)。该方法考虑了非线性因素,轴向张力之间的耦合,横流(CF)方向上的WV响应和流体动力,并具有简化的张力变化模型和经验流体动力模型。流体动力,包括在激励区域的激励力和在阻尼区域的阻尼力,是基于振动实验数据的激励系数,无量纲WV振幅和频率的函数。执行迭代以实现立管的水动力和WV响应之间的平衡。此外,还应用了来自挠性管模型测试的新增加的质量系数2.0,其中预测的WV响应频率显示出更高的精度。在2.8 m / s的均匀流量和2.0 m / s的剪切流量下,对预测结果和实验结果进行了比较,验证了该方法的可行性和可靠性。此外,通过比较轴向张力和WV响应之间是否存在耦合的预测结果,发现这种耦合效应对于VIV预测很重要,并且可以提高WV预测精度,尤其是在高流速和高振动的情况下模式。

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