The Evolution of Grinding Mill Power Models

被引:0
|
作者
Raj Rajamani
Pramod Kumar
Nicolin Govender
机构
[1] University of Utah,Metallurgical Engineering Department
[2] Polycorp Limited,Department of Chemical Engineering
[3] Research Center Pharmaceutical Engineering,undefined
[4] University of Surrey,undefined
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关键词
Grinding; Mill; Power; Discrete element method;
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学科分类号
摘要
Mill power models have been used in a variety of ways in industrial practice since power directly equates to throughput and fineness of ground product. We first start with Hogg-Fuerstenau Power Model and show how this model successfully predicted the power draw of many grinding mills in several mining operations. Then, we show how this model was on the verge of being able to predict the influence of lifter design on power draw. Next, we describe the discrete element model and how it overcame the issues faced by the previous power model. Using a DEM software known as Millsoft, we show the influence of lifter design geometry on power draw and analyze the power draw of rubber lifters versus the steel lifters via several case studies. As years passed, the two-dimensional discrete element model imbedded in Millsoft is superseded by three-dimensional discrete element method. Due to the gigantic computational power of graphic processing units, new computational codes that can do the tumbling motion along the entire length of the mill has come about. Here, we show the predictive capability of Blaze-DEM for ball and SAG mills.
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页码:151 / 157
页数:6
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