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Analysis of specific discharge rate functions in industrial scale cement grinding multi-compartment ball mills to assist ball mill modeling

机译:分析工业规模水泥粉磨多室球磨机的比排量功能,以协助球磨机建模

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摘要

Specific discharge rates in industrial scale multi-compartment cement grinding ball mills were determined using industrial scale data to assist modeling of multi-compartment ball mills. Multi-compartment ball mill model structures were proposed to estimate normalized specific discharge rate functions. Multi-compartment mills were divided into perfectly mixed mill segments to describe material transport mechanism in the mill. Specific discharge rate functions were determined by using the estimated mill hold-up for perfectly mixed mill segments at the steady state condition of the cement grinding circuits. Estimated normalized discharge rate functions were found to be different than the basic pattern observed in semi-autogenous mills due to the differences in design and operational conditions of the mills. Coarse particle accumulation was found to have a significant effect on discharge rate function pattern. Estimated normalized discharge rate functions could be used in modeling of multi-compartment ball mills. (C) 2015 Elsevier Ltd. All rights reserved.
机译:使用工业规模数据确定多室水泥磨球磨机的比排放率,以辅助对多室球磨机进行建模。提出了多室球磨机模型结构,以估计归一化的比排放率函数。多隔室磨房被分成完美混合的磨房段,以描述磨房中的物料运输机理。通过在水泥粉磨回路的稳态条件下使用估计的磨粉机滞留量来确定完美混合的磨粉机段,可以确定特定的排放速率函数。由于工厂设计和运行条件的差异,估计的归一化排量率函数不同于半自动工厂中观察到的基本模式。发现粗颗粒的积累对放电速率功能模式有重要影响。估计的归一化排放速率函数可用于多室球磨机的建模。 (C)2015 Elsevier Ltd.保留所有权利。

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