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Calibration of discrete element parameters and the modelling of silo discharge and bucket filling

机译:离散元素参数的校准以及料仓卸料和铲斗填充的建模

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摘要

The discrete element method (DEM) is a promising approach to model machine-granular material interaction. The accuracy of DEM models depends on the model parameters. In this study a calibration process is developed to determine the parameter values. Laboratory shear tests and compressions tests are used to determine the material internal friction angle and stiffness, respectively. These tests are repeated numerically using DEM models with different sets of particle friction coefficients and particle stiffness values. The shear test results are found to be dependent on both the particle friction coefficient and the particle stiffness. The compression test results show that it is only dependent on the particle stiffness. The combination of shear test and compression test results can be used to determine a unique set of particle friction and particle stiffness values. The calibration process is validated by modelling silo discharge and bucket filling. It is shown that DEM can accurately predict the silo discharge rate and flow patterns. It is also shown that DEM can predict bucket forces, fill rates and fill patterns.
机译:离散元素方法(DEM)是一种用于模拟机器-颗粒材料相互作用的有前途的方法。 DEM模型的准确性取决于模型参数。在这项研究中,开发了一种校准过程来确定参数值。实验室剪切试验和压缩试验分别用于确定材料的内部摩擦角和刚度。使用具有不同组的颗粒摩擦系数和颗粒刚度值的DEM模型在数值上重复这些测试。发现剪切测试结果取决于颗粒摩擦系数和颗粒刚度。压缩测试结果表明,它仅取决于颗粒刚度。剪切测试和压缩测试结果的组合可用于确定一组唯一的粒子摩擦力和粒子刚度值。通过对筒仓卸料和铲斗填充进行建模,可以验证校准过程。结果表明,DEM可以准确预测筒仓的排量和流量模式。还显示DEM可以预测铲斗力,填充率和填充样式。

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