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Hydraulic transport flow law of natural gas hydrate pipeline under marine dynamic environment

机译:海洋动态环境下天然气水合物管道的液压运输流法

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The work simulates the transport pipeline movement of the marine dynamic environment based on the computational fluid dynamics research method. The present work also studies the influence of the marine dynamic environment on the solid–liquid two-phase flow field in the pipeline. An experimental study on the hydraulic transport flow law of natural gas hydrate pipeline is performed on the experimental platform of deep-sea mining metallogenic system fluctuation. Results show a large disturbance of the transverse swing convection field of pipelines and a small influence of axial vibration. The flow field distribution characteristics in the conveyor pipeline are consistent with the steady-state working conditions when the amplitude of transverse oscillation is less than 0.5?m. When the oscillation amplitude is larger than 2?m, the vibration has a considerable influence on the solid-phase distribution, solid–liquid two-phase velocity, dynamic and static pressure, and pressure loss of the flow field in the conveying system. The flow field distribution is chaotic when the transverse oscillation period of the pipeline is small. This condition becomes highly evident when the oscillation amplitude is large.
机译:该工作基于计算流体动力学研究方法模拟了海洋动态环境的运输管道运动。本作者还研究了海洋动态环境对管道中固液两相流场的影响。天然气水合物管道液压输送流动法的实验研究对深海矿山矿化系统波动的实验平台进行。结果显示了横向摆动对流场的大扰动以及轴向振动的少量影响。当横向振荡的幅度小于0.5Ω时,传送管道中的流场分布特性与稳态工作条件一致。当振荡幅度大于2?M时,振动对固相分布,固态两相速度,动态和静压以及输送系统中流场的压力损失具有相当大的影响。当管道的横向振荡周期很小时,流场分布是混乱的。当振荡幅度大时,这种情况变得非常明显。

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