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CFD-DEM modelling of hydraulic transport of coarse solids in vertical pipelines

机译:垂直管道粗固体液压输运的CFD-DEM模型

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Hydraulic transport of solids in pipelines is an important operation in industries such as metallurgy, mining and mineral processing. The hydraulic behaviour of the solids, i.e. velocity and concentration spatial distributions and pressure drop, in the conveyer pipes should be well understood as it results in developing of a set of correlations which are necessary for the design of hydraulic pipelines. Pipeline slurries exhibit a complex range of flow patterns, depending upon the physical properties of carrier fluid and transported solids, the superficial liquid velocity and concentration of slurry. Most of numerical, theoretical and experimental studies in the area of vertical lifting have been focused on the transportations of fine and medium size solids; and just a few research have been carried out on the vertical hydraulic conveying of coarse particles, particularly in terms of numerical studies. Therefore, in this work, a three-dimensional Discrete Element Model (DEM) and Computational Fluid Dynamics (CFD) are coupled to study the hydraulic transport of coarse solids in vertical conveyers with carrying fluid of water under different operation conditions. The model shows a good agreement with experimental observations both qualitatively and quantitatively, and it captures some specific phenomena related to the coarse particles such as the near-wall hydrodynamic lift force, which keeps the particles away the pipe wall.
机译:管道中固体的水力运输是冶金,采矿和矿物加工等行业的重要操作。固体的液压行为,即速度和浓度空间分布和压降,在输送管中应该得到很好的理解,因为它导致液压管道设计所需的一组相关性。管道浆料表现出复杂的流动模式范围,取决于载体流体的物理性质和运输的固体,浅表液体速度和浆料浓度。垂直提升领域的大多数数字,理论和实验研究已经集中在细小尺寸固体的运输上;并且仅在粗颗粒的垂直液压输送上进行了一些研究,特别是在数值研究方面。因此,在这项工作中,三维离散元件模型(DEM)和计算流体动力学(CFD)耦合,以研究在不同操作条件下具有携带水的垂直输送机中的粗固体的液压传输。该模型显示了与定性和定量的实验观察的良好一致性,并且它捕获与诸如近壁流体动力升力的粗颗粒相关的一些特定现象,其将颗粒保持远离管壁。

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