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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Evolution of a generic, dynamic and multicomponent tumbling mill model structure incorporating a wide-range 4D appearance function
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Evolution of a generic, dynamic and multicomponent tumbling mill model structure incorporating a wide-range 4D appearance function

机译:一种通用,动态和多组分翻滚轧机模型结构的演化,包括宽范围的4D外观功能

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摘要

This work aims to build a generic dynamic model structure, which can accommodate interchangeable sub-models of each sub-process, making it amenable to continuous upgrade without the need for redevelopment, for multicomponent tumbling grinding mills. The Generic Tumbling Mill Model Structure (GTMMS) is based on a population mass balance framework which incorporates breakage characteristics, transport, classification along the mill, a discharge function, and energy consumption incorporated in a dynamic mill model structure. Version III builds on two earlier versions by incorporating energy distributions derived from discrete element modelling, an updated version of the 4D breakage appearance function which applies to a broader size range, and addresses multi-component ore breakage via the probability distribution of energy split based on material stiffness. The model has been tested against multi-component plant survey data GTMMS III suggests a mechanistic insight into mixture prediction through component analysis and is a step forward towards the unified comminution model (UCM) with its mechanistic, generic, and dynamic prediction capability. (C) 2018 Elsevier B.V. All rights reserved.
机译:这项工作旨在建立一种通用动态模型结构,可以适应每个子过程的可互换子模型,使其可连续升级,而无需重新开发,对于多组分翻滚磨碎机。通用翻滚模型结构(GTMMS)基于群体质量平衡框架,该框架包括破损特性,运输,沿研磨机中的排出功能和能量消耗,包括在动态轧机模型结构中。通过结合离散元素建模的能量分布来构建两个早期版本的版本,适用于更广泛尺寸范围的4D断开外观功能的更新版本,并通过基于的能量分配的概率分布来解决多分量矿石破损物质僵硬。该模型已经针对多组分植物调查数据进行了测试,GTMMS III表明通过组件分析的混合预测力学洞察,并且是朝向统一粉碎模型(UCM)的步骤,其机械师,通用和动态预测能力。 (c)2018 Elsevier B.v.保留所有权利。

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