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Flow Characteristics of Air-lift Pumps for Deep-sea Mining Using Enlargement Conveying Pipe and/or Back-pressure Device

机译:使用扩大输送管和/或背压装置的深海采矿用气举泵的流量特性

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In deep-sea mining conditions, abrasion on periphery units of the outlet is predicted at large flow rates of supplied air because the velocity of solid-phase becomes very large toward the outlet of the conveying pipe owing to very great expansion of the air and corresponding velocities. In this paper, we present flow characteristics of air-lift pumps for deep-sea mining and discuss methods of the countermeasure. That is, some numerical simulations are performed for the flow conditions of air-lift pumps applied one-stepped enlargement pipe in the end part of conveying pipe and/or added excess pressure using back-pressure device at the outlet of conveying pipe. Consequently, it is found to reduce the velocity of solid-phase at the outlet considerably, almost remaining flow rate of lifting slurry. And we demonstrate most appropriate length of enlargement conveying pipe that maximum velocities of solid-phase became equal in main conveying pipe section and enlargement conveying pipe section. As a result, a guideline and fundamental data to design air-lift pumps for deep-sea mining more practically could be shown.
机译:在深海采矿条件​​下,由于空气的大量膨胀和相应的膨胀,固相向输送管出口的速度变得非常大,因此在供给的空气流量大时,预计出口的外围单元会发生磨损。速度。本文介绍了深海采矿用气举泵的流量特性,并讨论了对策。即,对于在输送管的端部采用单级放大管的空气提升泵的流动状况和/或在输送管的出口处使用背压装置对施加的过剩压力进行了数值模拟。因此,发现显着降低了出口处的固相速度,几乎保持了提升浆液的流速。并说明了最合适的膨胀输送管长度,即,在主输送管段和膨胀输送管段中,固相的最大速度相等。结果,可以显示出更实际地设计用于深海采矿的气举泵的指南和基本数据。

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