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Optimization of an industrial scale open circuit three-compartment cement grinding ball mill with the aid of simulation

机译:借助仿真优化工业规模开路三室水泥研磨球磨机的优化

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An industrial scale FLSmidth (R) three-compartment cement grinding ball mill operating in open circuit was sampled at the steady state conditions. The three-compartment ball mill was modelled by using the perfect mixing modelling approach [1]. Classification performance of the intermediate and discharge diaphragms of the ball mill were modelled by the efficiency curve approach [2]. Second and third compartments were combined and the mill was simulated as a two-compartment by using the JKSimMet simulation program. Grinding capacity increase when the three-compartment ball mill was converted to a two-compartment ball mill was evaluated by simulation. The same cylpebs size distribution and load were assumed to be applied in the second compartment of the new mill design. Simulation result showed that, 10% capacity increase can be achieved with 16% material retained on 0.045 mm in the mill discharge when the mill was converted to a two-compartment mill. (C) 2016 Elsevier B.V. All rights reserved.
机译:在稳态条件下采样在开路中操作的工业尺度FLSMIDTH(R)三室水泥研磨球磨机。通过使用完美的混合建模方法[1]模拟三室球磨机。通过效率曲线方法模拟球磨机的中间和放电隔膜的分类性能[2]。结合了第二和第三隔室,通过使用JKSIMMET仿真程序将研磨器被模拟为双隔室。通过模拟评估三室球磨机当三室球磨机转换为双隔室球磨机时增加磨削容量。假设相同的圆柱尺寸分布和载荷在新轧机设计的第二个隔室中应用。仿真结果表明,当研磨机转化为两室磨机时,可以在研磨机排放中保留0.045mm的16%物质,以10%的容量增加。 (c)2016年Elsevier B.v.保留所有权利。

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