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A review of computer simulation of tumbling mills by the discrete element method: Part I--contact mechanics

机译:离散元素方法对滚磨机的计算机仿真的回顾:第一部分-接触力学

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摘要

In recent years, there has been a rapid advancement in the understanding of tumbling mills through computer simulation using the discrete element method (DEM). It has thus far been able to qualitatively capture the behavior of the charge in ball, semi-autogenous, planetary, and many other types of tumbling mills. Quantitatively, it also allows accurate predictions of individual particle trajectories, distribution of contact forces and energies between collisions, wear, and most importantly, power draw. This review critically evaluates the understanding of the three important areas of the simulation aspect: the inter-particle force laws, significance and choice of contact parameters, and finally implementation of the numerical scheme. With the correct material properties and operating parameters, it is now possible to make useful predictions as to how tumbling mills perform.
机译:近年来,通过使用离散元素方法(DEM)进行计算机模拟,对翻滚磨机的理解有了快速的进步。迄今为止,它已经能够定性地捕获球,半自动,行星式和许多其他类型的翻滚磨机中装料的行为。从数量上讲,它还可以精确预测单个粒子的轨迹,碰撞,磨损以及最重要的是功率消耗之间的接触力和能量分布。这篇综述主要评估了对仿真方面的三个重要方面的理解:粒子间力定律,接触参数的重要性和选择,以及最终实现的数值方案。有了正确的材料特性和操作参数,现在就可以对滚筒式轧机的性能做出有用的预测。

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