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首页> 外文期刊>Journal of Engineering Mechanics >Modeling nonspherical particles using multisphere discrete elements
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Modeling nonspherical particles using multisphere discrete elements

机译:使用多球面离散元素建模非球面粒子

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In this paper axisymmetrical particles are modeled as multisphere discrete elements using a method in which particles are represented by overlapping spheres, fixed rigidly with respect to a local coordinate system. Contact detection is sphere-based and the resultant forces are transformed to the particle centroid to calculate the particle motion using standard discrete element method conventions. The multisphere method was used to model discharge of ellipse-shaped particles through an orifice in a flat-bottomed hopper and the simulations compared with physical experiments at the same scale. There was good agreement between the flow behavior of the simulated and physical particle assemblies for all orifice sizes. The rate of discharge and the vertical velocity profiles in the region of converging flow determined for the simulated and physical flows were in close agreement for flow from the larger orifices. A similar relationship between frequency of arch formation, particle mean diameter, and orifice diameter as for spheres was observed. [References: 21]
机译:在本文中,轴对称粒子使用一种方法建模为多球体离散元素,其中粒子由重叠的球体表示,相对于局部坐标系刚性固定。接触检测是基于球面的,并且将合力转换为粒子质心,从而使用标准离散元素方法约定来计算粒子运动。多球形方法用于对椭圆形颗粒通过平底料斗中的孔口的排放进行建模,并将模拟与相同规模的物理实验进行比较。在所有孔尺寸下,模拟粒子组件和物理粒子组件的流动行为之间都有很好的一致性。为模拟流量和物理流量确定的会聚流量区域的流量和垂直速度分布与较大孔口的流量非常吻合。观察到拱形形成频率,颗粒平均直径和孔直径之间的关系与球形相似。 [参考:21]

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