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THE FINCH-MclVOR FUNCTIONAL PERFORMANCE BASED GRINDING CIRCUIT MODELING SYSTEM

机译:基于FINCH-MCLVOR功能性能的研磨电路建模系统

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This paper presents the development of a new grinding circuit steady-state modeling system. It is fundamentally based on the "functional performance equation", which has now been used to improve the performance of numerous grinding circuits. This equation characterizes the two distinct efficiencies that are at work in a ball milling circuit, and how these relate to overall circuit productivity. It does so based on the particle size chosen to distinguish between coarse and fine (product size) material. Now, by applying it to all the material size classes, a simple yet reliable ball mill model was created. Combined with cyclone recoveries, the complete, detailed grinding circuit performance can be exactly reproduced mathematically by the computer program. It can then be used with separate process equipment application engineering methods to systematically engineer grinding circuit improvements. The development, features, uses and limitations of the system are described.
机译:本文介绍了新型磨削电路稳态建模系统的开发。从根本上基于“功能性能方程”,现在已经用于提高众多研磨电路的性能。该等式表征了在球磨电路中工作的两个不同的效率,以及这些效率如何与整体电路生产率相关。基于选择以区分粗细胞和精细(产品尺寸)材料的粒度为基础。现在,通过将其应用于所有材料尺寸类,创建了一个简单而可靠的球磨机模型。结合旋风恢复,可以通过计算机程序准确地复制详细的研磨电路性能。然后可以与单独的过程设备应用工程方法一起使用,以系统地工程师磨削电路改进。描述了系统的开发,特征,用途和限制。

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