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EXPERIMENTAL STUDIES OF PRESSURE LOSS FOR LARGE PARTICLE SLURRY TRANSPORT IN OSCILLATED PIPE FOR SUBSEA MINING

机译:浅埋管道振动管道大颗粒泥浆运输压力损失的试验研究

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Subsea minerals exist in the deep water within Japanese exclusive economic zone. Development of slurry pump passing large particles is required for lifting ore. In design of slurry pump, it is significant to estimate the pressure loss in a riser pipe for large particle slurry transport. Therefore the authors have been studied the slurry flow model for large particle slurry transport. In addition, the authors developed the model for the static pipe including the inclined configurations. Since the lifting pipe will be oscillated due to the connected ship motion and VIV (Vortex Induced Vibration), the authors conducted the scaled model experiment to investigate the effects of pipe oscillation on the pressure loss. The model scale was 1/8. Alumina beads and glass beads were used as solid particles in the experiment. The pipe was vertical, and oscillated in horizontal or vertical direction. The experimental results showed that the horizontal and vertical oscillation had little influence on the static pressure loss in most of the experimental conditions. However the influence was observed for the horizontally oscillating pipe in the low slurry velocity and short oscillation period condition. On the other hand, the significant fluctuation components of pressure loss and flow rate were observed in vertically oscillating pipe. The results also indicated that the density of slurry and amplitude of oscillation had influence on the fluctuation components of pressure loss and flow rate but the particle diameters had little influence on them.
机译:在日本专属经济区的深水中存在海底矿物。为了提升矿石,需要开发通过大颗粒的渣浆泵。在泥浆泵的设计中,估算大颗粒泥浆输送的立管中的压力损失非常重要。因此,作者已经研究了用于大颗粒泥浆输送的泥浆流模型。另外,作者开发了包括倾斜配置的静态管道模型。由于起吊管将由于船舶运动和VIV(涡激振动)的连接而发生振荡,因此作者进行了比例模型实验,研究了管振动对压力损失的影响。模型比例为1/8。在实验中将氧化铝珠和玻璃珠用作固体颗粒。该管是垂直的,并且在水平或垂直方向上振荡。实验结果表明,在大多数实验条件下,水平和垂直振荡对静压损失的影响很小。然而,在低泥浆速度和短振荡周期条件下,对于水平振荡管观察到了影响。另一方面,在垂直振荡管中观察到压力损失和流量的显着波动分量。结果还表明,浆料的密度和振荡幅度对压力损失和流量的波动分量有影响,而粒径对它们的影响很小。

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