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Simulation assisted capacity improvement of cement grinding circuit: Case study cement plant

机译:水泥粉磨回路的模拟辅助能力提高:水泥厂案例研究

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摘要

Extensive sampling campaign was performed around the cement grinding circuit of a cement plant in Turkey, for different production types of cement, as CEM I 42.5, CEM II 32.5/42.5/52.5, for the modelling and simulation purposes. During the sampling surveys; samples were collected from around the circuit for the steady state condition of the operation and, following a crash stop, from inside the mill. The size distributions of the samples were determined down to 2 μm by the combination of sieving and laser sizing methods. By using the size distributions around the circuit and control room data mass balance studies were performed. Then equipments in the circuit; ball mill, air-classifier and filter, were modelled individually by using the appropriate model structures. After modelling the circuit, simulation studies were performed for capacity improvement, mainly by the ball size optimization. By implementing the proposed optimization, the capacity of the circuit was increased up to 12.7–20.5% for different production types, hence; the overall specific energy consumption of the circuit was reduced, as predicted in simulation studies.
机译:在土耳其的一家水泥厂的水泥粉磨电路周围,针对建模生产和模拟目的,针对不同生产类型的水泥(CEM I 42.5,CEM II 32.5 / 42.5 / 52.5)进行了广泛的采样活动。在抽样调查中;在运行的稳态条件下,从电路周围收集样品,在撞车停止后,从磨机内部收集样品。通过筛分和激光筛分方法的组合,确定了样品的尺寸分布,直至2μm。通过使用电路和控制室周围的大小分布,进行了质量平衡研究。然后是电路中的设备;球磨机,空气分级机和过滤器通过使用适当的模型结构进行单独建模。在对电路建模之后,主要通过球尺寸优化来进行仿真研究以提高容量。通过实施建议的优化,不同生产类型的电路容量提高到了12.7–20.5%。正如仿真研究所预测的那样,电路的总体比能耗降低了。

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