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首页> 外文期刊>資源と素材: 资源·素材学会志 >Effect of Pressure Drop Owing to Friction between Pipe Inner Wall and Water on Non-equilibrium Flow Fields in an Air-lifting Pipe /Fundamental study on lifting system for mining marine mineral resources
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Effect of Pressure Drop Owing to Friction between Pipe Inner Wall and Water on Non-equilibrium Flow Fields in an Air-lifting Pipe /Fundamental study on lifting system for mining marine mineral resources

机译:压力下降的影响,由于采矿船舶矿产资源升降管道中的管内壁与水摩擦摩擦摩擦

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The present paper is concerned with a theoretical analysis of the steady characteristics of an air-lift pump system for conveying the marine mineral resources from the deep-sea bed to the sea surface. Here, the effect of pressure drop owing to the friction between the fluid and the inner wall of the pipe is taken into consideration. Some numerical experiments have been carried out using a set of five equations in the solid-liquid two-phase region and a set of eight equations in the solid-gas-liquid three-phase region for determining the non-equilibrium flow properties. In particular, the influence of the pipe diameter as well as the liquid-phase velocity on the solid-phase mass flux to be lifted has been examined from a numerical point of view. It has been quantitatively demonstrated how the mass flux of mineral ores decreases because the pressure drop due to the wall friction becomes more remarkable as the liquid-phase velocity is higher and the pipe diameter is selected to be smaller. Again, the critical condition whether or not solid particles can be lifted has been indicated with the liquid-phase velocity and the pipe diameter as parameters. Such important problems are described in detail.
机译:本文件涉及的空气提升泵系统的稳定特征,用于从深海床输送海洋矿物资源到海面的理论分析。这里,由于流体和管的内壁之间的摩擦压力降的影响考虑在内。一些数值实验已经进行了使用一组在固 - 液两相区5个方程和在固 - 气 - 液的三相区域用于确定所述非平衡流动性的组八个方程。特别地,管直径的影响,以及对所述固相的质量通量液相速度被提升已经从数值上看检查。它已被证实定量矿物矿石的质量流量如何降低,因为由于壁摩擦随着液相速度更加显着的压降越高,管直径被选择为小。同样,固体颗粒是否能够被提升的临界条件已经指示与液体相速度和管道直径作为参数。这样重要的问题进行详细说明。

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