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Investigation of rice grain flow by multi-sphere particle model with rolling resistance

机译:利用滚动阻力的多球粒子模型研究稻米流

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A multi-sphere (MS) model combined with rolling friction was considered for modelling elongated particles of irregular shape. The performance of the model was investigated by numerical simulations of the rice grain flow. A set of 5000 poly-dispersed milled rice grains were selected for the investigation purposes. They were characterised by a constant aspect ratio 3.5, while their maximum size was ranging from 6.4 to 7.3 mm. Filling and discharge flow as well as piling were simulated numerically with and without rolling resistance of particles. Simulation results were validated on the basis of experimental results. Good agreement of numerical and experimental results in terms of the discharge time and repose angle of the pile was reached simultaneously, when rolling resistance was introduced.
机译:考虑将多球(MS)模型与滚动摩擦相结合,以对不规则形状的细长粒子进行建模。通过对米粒流的数值模拟研究了模型的性能。为研究目的,选择了一组5000种多分散碾米粉。它们的特征是恒定的纵横比3.5,而最大尺寸在6.4到7.3 mm之间。在有和没有颗粒滚动阻力的情况下,对填充和排出流动以及堆积进行了数值模拟。仿真结果在实验结果的基础上得到验证。在引入滚动阻力的同时,就桩的排出时间和休止角而言,数值和实验结果达到了良好的一致性。

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