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首页> 外文期刊>Minerals Engineering >MECHANICS OF MEDIA MOTION IN TUMBLING MILLS WITH 3D DISCRETE ELEMENT METHOD
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MECHANICS OF MEDIA MOTION IN TUMBLING MILLS WITH 3D DISCRETE ELEMENT METHOD

机译:3D离散元法在碾磨机中的介质运动机理

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The charge motion in a tumbling mill is analyzed in detail using a numerical simulation scheme known as the discrete element method (DEM). In particular, the profile of the ball charge, impact energy distribution and power draft are predicted as a function of mill operating conditions. The analyses are verified by direct experimentation in a 90-cm diameter ball mill of adjustable length fitted with a transparent end-plate. The images of the charge motion are captured on a video camera and analyzed with image-processing software. Simultaneously, the mill power is recorded with a torque sensor.The DEM prediction of power draw is compared with experimental measurements. Also, predicted charge profiles are compared with video images. Both ball segregation and surging phenomena are analyzed A novel scheme of analyzing video images for obtaining impact energy spectra is shown. In all cases, the results of the numerical scheme are in good agreement with experimental measurements, thereby proving that the three-dimensional numerical code is a viable tool for ball mill analysis.
机译:使用称为离散元素法(DEM)的数值模拟方案详细分析了翻滚磨机中的装料运动。尤其是,根据磨机工况预测球装料,冲击能分布和功率吃水曲线。通过在带有透明端板的可调长度的90厘米直径的球磨机中进行直接实验来验证分析结果。电荷运动的图像在摄像机上捕获,并使用图像处理软件进行分析。同时,用扭矩传感器记录磨机功率,将功率消耗的DEM预测与实验测量值进行比较。同样,将预测的电荷分布与视频图像进行比较。分析了球的偏析和喘振现象。给出了一种分析视频图像以获得冲击能谱的新方案。在所有情况下,数值方案的结果都与实验测量结果非常吻合,从而证明了三维数值代码是进行球磨机分析的可行工具。

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