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CFD simulation of a gravitational air classifier

机译:重力空气分级机的CFD模拟

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The air classification of manufactured sand (i.e., fine aggregates from crushed rock with a particle size smaller than about 4 mm) is utilised to separate crushed rock material into a fine particle fraction (filler, <100 ìm) and a coarse particle fraction (>100 urn). Reducing the filler content of the manufactured sand is especially important for the concrete industry to ensure the rheology of the cement paste. There is an on-going search for production methods that can be applied to produce suitable manufactured sand that fulfils the requirements set by ready-mix concrete producers. A gravitational air classifier was investigated using computer fluid dynamics (CFD) to increase the understanding of the parameters controlling the flow field and how they affect the behaviour and efficiency of the classification process. The influence of the design and the geometrical parameters of the classifier on the flow field and air classification performance were also simulated and evaluated using the CFD technique.
机译:人造砂的空气分类(即,来自碎石的细骨料,其粒径小于约4 mm)被用于将碎石材料分离成细颗粒级分(填料,<100μm)和粗颗粒级分(> 100缸)。降低人造砂的填料含量对确保水泥浆的流变性的混凝土行业尤为重要。一直在寻找可用于生产满足预拌混凝土生产商设定要求的合适人造砂的生产方法。使用计算机流体动力学(CFD)对重力空气分级机进行了研究,以增加对控制流场的参数以及它们如何影响分级过程的行为和效率的了解。还使用CFD技术模拟和评估了分类器的设计和几何参数对流场和空气分类性能的影响。

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