波流载荷作用下子母管水动力特性研究

RESEARCH ON THE HYDRODYNAMIC CHARACTERISTICS OF PIGGYBACK PIPELINES UNDER WAVES AND CURRENTS

  • 摘要: 在大型水槽中开展子母管水动力模型实验,研究了海流参数、波浪参数、子母管相对角度θ和管床间隙比e/D等因素对母管水动力载荷和频率特征的影响。结果表明:单独流作用下,当θ为60°~150°时,母管阻力系数CD较单管道显著增大;根据θ值的不同,远离床面母管可能受到指向床面或背离床面的平均竖向力;单独波作用下,全埋管道升力幅值较间隙比0情况有显著放大,呈现与DNV规范单管道推荐值相反的趋势;波流共同作用下,母管升阻力频率出现波浪频率的亚谐波和谐波频率,升力的主频为波浪频率的亚谐波频率。

     

    Abstract: Model experiments were conducted in a large wave flume to investigate the hydrodynamic loads and frequency characteristics of piggyback pipelines. The effects of the current parameters, the wave parameters, the relative angle θ between the main and the secondary pipes, and the gap-to-diameter ratio e/D between the main pipe and the seabed were considered. The results show that under current-only conditions, when θ ranges between 60° and 150°, the drag coefficient CD of the main pipe increases significantly compared to that of a single pipe. Depending on θ, the wall-free main pipe may experience an average vertical force either toward or away from the seabed. Under wave-only conditions, the amplitude of the lift force for a fully buried pipeline is significantly amplified compared to the case of e/D = 0, and showing a trend opposite to the DNV recommended values for single pipes. Under combined wave-current conditions, the frequencies of the lift and drag forces on the main pipe exhibit subharmonic and harmonic frequencies of the wave frequency, with the dominant frequency of the lift force being the subharmonic frequency.

     

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