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Validation of a model for physical interactions between pulp, charge and mill structure in tumbling mills

机译:翻滚磨机中纸浆,装料和磨机结构之间的物理相互作用模型的验证

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Modelling the pulp fluid and its simultaneous interactions with both the charge and the mill structure is an interesting challenge. The interactions have previously been modelled for dry grinding with a combination of discrete element method (DEM), smoothed particle hydrodynamics (SPH) and the finite element method (FEM), where the DEM particles or SPH particles represent the grinding balls and FEM is used to model the mill structure. In this work, the previous model is extended to include fluids with SPH. Wet milling with water and a magnetite pulp, for graded and mono-size charges are numerically modelled and validated. The internal working of the charge and the physical interaction between the charge and the mill structure is studied. The combined SPH-DEM-FEM model presented here can predict the classical DEM results, but can also predict responses from the mill structure, as well as the pulp liquid flow and pressure. Validation is conducted by comparing numerical results with experimental measurements from grinding in an instrumented small-scale batch ball mill equipped with an accurate torque metre. The simulated charge movement is also compared with high speed video of the charge movement for a number of cases. Numerical results are in good agreement with experimental measurements. (C) 2014 Elsevier Ltd. All rights reserved.
机译:对纸浆流体及其与装料和磨机结构的同时相互作用进行建模是一个有趣的挑战。以前已经使用离散元方法(DEM),平滑粒子流体动力学(SPH)和有限元方法(FEM)结合为干磨建模了相互作用,其中DEM粒子或SPH粒子表示磨球,并且使用FEM模拟工厂结构。在这项工作中,先前的模型被扩展为包括具有SPH的流体。对水和磁铁矿浆进行湿磨,以进行分级和单色装料的数值建模和验证。研究了装料的内部工作以及装料与磨机结构之间的物理相互作用。此处介绍的SPH-DEM-FEM组合模型可以预测经典的DEM结果,但也可以预测磨机结构以及纸浆液体流量和压力的响应。通过将数值结果与在配备有精确扭矩米的仪器化小规模间歇式球磨机中进行的研磨实验结果进行比较来进行验证。在许多情况下,还将模拟的电荷运动与电荷运动的高速视频进行比较。数值结果与实验测量结果非常吻合。 (C)2014 Elsevier Ltd.保留所有权利。

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