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EXPERIMENTAL STUDY ON THREE PHASE FLOW IN INCLINED PIPE FOR DEEP SEA MINING

机译:深海采矿倾斜管三相流动的试验研究

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Subsea minerals exist in the deep water within Japanese exclusive economic zone. However, the development of subsea minerals is not commercialized. The Air-lift pump is the promising method for subsea minerals transport. It is significant to estimate the amount of lifting ore when the conditions of submergence ratio and supplying air volume are changed. The estimation of the amount of lifting ore needs the void fraction in three phase flow and friction loss in pipe. Therefore, the empirical methods to estimate the void fraction and friction loss in mainly vertical pipe were proposed in the previous studies. However, the lifting system for subsea minerals has not only vertical pipe but inclined pipe. There are few works for flow assurance on three phase flow in inclined pipe. Then we conducted the scale model experiment to investigate void fraction and friction loss. The experiment was conducted in the conditions of the five kinds of inclination angles. We used the glass beads as solid particles in the experiment. The glass beads were 4mm in diameter and 2553kg/m~3 in density. The internal diameter of pipe was 26mm. We applied the empirical method for vertical or horizontal pipe proposed in previous researches to the present experimental condition. Then we compared the experimental results with the calculated ones on void fraction and friction loss. As the results, the calculated results were in good agreement with the experimental ones. Therefore, it was suggested that the void fraction and friction loss in the inclined pipe could be calculated by the empirical method based on the experiment on the vertical or horizontal pipe.
机译:海底矿物存在于日本专属经济区的深水中。但是,海底矿物的发展未商业化。空气提升泵是海底矿物运输的有希望的方法。估计淹没率和供应空气量的条件改变时估计升降矿量很大。升降矿量的估计需要在管道中三相流动和摩擦损失中的空隙分数。因此,在先前的研究中提出了估计主要垂直管的空隙级分和摩擦损失的经验方法。然而,海底矿物的提升系统不仅具有垂直管道但倾斜管道。在倾斜管道上的三相流动上有很少的作品。然后我们进行了规模模型实验,以研究空隙分数和摩擦损失。该实验在五种倾斜角度的条件下进行。我们使用玻璃珠作为实验中的固体颗粒。玻璃珠直径为4mm,密度为2553kg / m〜3。管道的内径为26mm。我们应用了先前研究中提出的垂直或水平管的经验方法,这是对本实验条件的研究。然后我们将实验结果与计算的空隙分数和摩擦损失进行比较。结果,计算结果与实验结果吻合良好。因此,建议倾斜管中的空隙部分和摩擦损失可以通过基于垂直或水平管上的实验的经验方法计算。

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