首页> 外文会议>International mineral processing congress >DISCRETE ELEMENT METHOD – COMPUTATIONAL FLUID DYNAMICS MODELLING OF FLOW BEHAVIOUR IN A STIRRED MILL – EFFECT OF OPERATION CONDITIONS
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DISCRETE ELEMENT METHOD – COMPUTATIONAL FLUID DYNAMICS MODELLING OF FLOW BEHAVIOUR IN A STIRRED MILL – EFFECT OF OPERATION CONDITIONS

机译:离散元法 - 搅拌磨机流动性能的计算流体动力学建模 - 操作条件的效果

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Stirred mills are increasingly used in the mineral industry for a range of milling duties from fine to coarse grinding. This work investigated the particle and fluid flow in a stirred millusing a combined discrete element method (DEM) and computational fluid dynamics (CFD) approach. The effect of operation conditions such as millloading and disc rotation speed was studied. The flow properties were analysed in terms of flow velocity, power draw, collision frequency and collision energy. Both particle and fluid flows showed different flow patterns at different millloadings. Higher mill loading showed an increased collision frequency and decreased collision energy within the particle flow. The regions with high impact energy were also observed near the disc and mill chamber at a high loading. Both collision energy and collision frequency increased with increasing mill speed. Energy consumption increased faster with mill loading than total impact energy, which reduced mill energy efficiency. The results obtained for the particle-fluid system were qualitatively comparable with those obtained from dry systems under similar operating conditions. The findings would be useful to understand and optimise operation condition for improved grinding performance.
机译:搅拌磨坊越来越多地用于矿业行业,一系列铣削职责从良好的磨损磨损。该作品研究了搅拌颗粒组合的离散元件(DEM)和计算流体动力学(CFD)方法中的颗粒和流体流动。研究了诸如毫流和盘旋转速度之类的操作条件的影响。在流速,功率抽取,碰撞频率和碰撞能量方面分析了流动性质。颗粒和流体流动在不同的毫流中显示出不同的流动模式。较高的磨机载荷显示颗粒流的碰撞频率增加并降低碰撞能量。在圆盘和研磨室附近也观察到具有高冲击能量的区域,在高负载下。碰撞能量和碰撞频率随着轧机速度的增加而增加。能量消耗比轧机装载更快地增加,比总冲击能量降低,减少了轧机能量效率。对于颗粒 - 流体系统获得的结果与在类似的操作条件下从干燥系统获得的那些相当。该发现对于了解和优化操作条件,可用于改善研磨性能。

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