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Applying Computationally Intensive Techniques to Modelling of Comminution Devices

机译:将计算密集型技术应用于粉碎设备的建模

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Over the last four years, a major collaboration between CSIRO-MIS, UCT and JKMRC has produced two significant advances in the modelling of comminution. The Universal Comminution Model (UCM) uses parametric SPH/DEM studies of comminution and separation devices to calibrate mathematical models which are suitable for industrial use.The Virtual Comminution Machine (VCM) uses the same computationally intensive techniques based on discrete element modelling (DEM) and smoothed particle hydrodynamics (SPH) to directly model any comminution device by combining a CAD file describing the machine design, sophisticated ore characterisation methods and advanced particle scale flow and breakage simulation.The UCM should be useful for process analysis and optimisation of existing equipment and circuits while the VCM should make a major contribution to the evaluation and development of new machines.Progress to date is encouraging with several processes now well described using DEM.This paper also reports on progress towards combining DEM for particles with a realistic slurry model based on SPH for different types of comminution devices. In due course, this combination should allow accurate modelling of particle transport in wet mills to be combined with DEM models.
机译:在过去的四年中,CSIRO-MIS,UCT和JKMRC之间的主要合作在粉碎建模中产生了两个重要进展。通用粉碎模型(UCM)使用对粉碎和分离装置的参数SPH / DEM研究,以校准适合工业用途的数学模型。虚拟粉碎机(VCM)基于离散元素建模(DEM)使用相同的计算密集型技术(DEM)通过将描述机器设计,复杂的矿石表征方法和高级粒子尺度流和破损模拟结合CAD文件直接模拟任何粉碎装置的直接模拟任何粉碎装置。UCM应该对现有设备的过程分析和优化有用电路,虽然VCM应该对新机器的评估和开发作出重大贡献。迄今为止,迄今为止使用DEM良好描述的几个进程进行了令人鼓舞。本文还报告了基于现实泥浆模型与现实泥浆模型结合颗粒的进展。不同类型的粉碎装置的SPH。在适当的过程中,这种组合应允许在湿磨机中准确建模湿磨机与DEM模型结合。

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