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Research on reflux in deep-sea mining pump based on DEM-CFD

机译:基于DEM-CFD的深海采矿泵回流研究

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The complex circumstances of deep-sea mining result in unexpected accidents. When a pump abruptly stops working during mining in deep seas, several tons of minerals need to be refluxed. The commonly used computational fluid dynamics (CFD) method cannot simulate the required reflux because the volume of particles is neglected. However, this parameter can be calculated using Discrete Element Method-computational fluid dynamics (DEM-CFD). Using this method, the movement of particles and the location of the blockage becomes evident. In this study, DEM-CFD was used to simulate the reflux of nodules of diameter d <= 10, d <= 20, and d <= 50 mm with a volume concentration of 8%. The results indicated that particles of diameter d <= 50 mm cannot be refluxed and they are likely to accumulate at the junction of the impeller and vanes. Thus, the diameter of the particles needs to be controlled for effective functioning of the lifting pumps, and prevent deep-sea mining accidents.
机译:深海挖掘的复杂情况导致意外事故。 当泵在深海开采期间突然停止工作时,需要回流几吨矿物质。 常用的计算流体动力学(CFD)方法不能模拟所需的回流,因为颗粒的体积被忽略。 然而,该参数可以使用离散元素方法计算流体动力学(DEM-CFD)来计算。 使用这种方法,粒子的运动和堵塞的位置变得明显。 在该研究中,DEM-CFD用于模拟直径D <= 10,D <= 20,D <= 50mm的结节的回流,体积浓度为8%。 结果表明,直径D <= 50mm的颗粒不能回流,并且它们可能在叶轮和叶片的结处积聚。 因此,需要控制颗粒的直径,以便有效地运作提升泵,并防止深海挖掘事故。

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