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Experimental Study of the Vortex-Induced Vibration of Drilling Risers under the Shear Flow with the Same Shear Parameter at the Different Reynolds Numbers

机译:不同雷诺数下相同剪切参数的剪切流下立管涡激振动的实验研究

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摘要

A considerable number of studies for VIV under the uniform flow have been performed. However, research on VIV under shear flow is scarce. An experiment for VIV under the shear flow with the same shear parameter at the two different Reynolds numbers was conducted in a deep-water offshore basin. Various measurements were obtained by the fiber bragg grating strain sensors. Experimental data were analyzed by modal analysis method. Results show several valuable features. First, the corresponding maximum order mode of the natural frequency for shedding frequency is the maximum dominant vibration mode and multi-modal phenomenon is appeared in VIV under the shear flow, and multi-modal phenomenon is more apparent at the same shear parameter with an increasing Reynolds number under the shear flow effect. Secondly, the riser vibrates at the natural frequency and the dominant vibration frequency increases for the effect of the real-time tension amplitude under the shear flow and the IL vibration frequency is the similar with the CF vibration frequency at the Reynolds number of 1105 in our experimental condition and the IL dominant frequency is twice the CF dominant frequency with an increasing Reynolds number. In addition, the displacement trajectories at the different locations of the riser appear the same shape and the shape is changed at the same shear parameter with an increasing Reynolds number under the shear flow. The diagonal displacement trajectories are observed at the low Reynolds number and the crescent-shaped displacement trajectories appear with an increasing Reynolds number under shear flow in the experiment.
机译:在均匀流动下对VIV进行了大量研究。但是,在剪切流下对VIV的研究很少。在深水近海盆地中,在两个不同雷诺数下具有相同剪切参数的剪切流下,进行了VIV实验。通过光纤布拉格光栅应变传感器获得了各种测量结果。实验数据采用模态分析法进行分析。结果显示了一些有价值的功能。首先,切变频率下固有频率对应的最大阶模态是最大主导振动模态,在剪切流作用下,VIV中出现多峰现象,并且在相同剪切参数下,多峰现象随着增加而增大。剪切流作用下的雷诺数。其次,在剪切流作用下,立管以自然频率振动,主振动频率增加,这是实时剪切振幅的影响,在我们的雷诺数为1105时,IL振动频率与CF振动频率相似。在实验条件下,IL主导频率是CF主导频率的两倍,雷诺数增加。此外,立管不同位置的位移轨迹呈现出相同的形状,并且在相同的剪切参数下,随着剪切流的雷诺数增加,形状发生变化。在实验中,在低雷诺数下观察到对角位移轨迹,在剪切流作用下,月牙形位移轨迹随着雷诺数的增加而出现。

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