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Optimum Cell Condition for Contact Detection Having a Large Particle Size Ratio in the Discrete Element Method

机译:离散元方法中具有大粒径比的接触检测的最佳细胞条件

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摘要

The Distinct Cell Model (DCM) for the contact detection in the algorithm of the Discrete Element Method was proposed to improve the calculation speed when particles have a large size ratio.This model has several grids,which are overlapped three-dimensionally,and the particles having different size are boxed in a suitable grid cell.The contact detection time of this model was measured and compared with that of the conventional cell model in the simulation of a rotating dram.The contact detection using the DCM was extremely faster than that of the conventional cell model;e.g.when particles had a size ratio of d_(max)/d_(min)=15,the speed-up was about 25.The speed-up ratio increases with increasing particle size ratio,regardless of the number of grids.This model has an advantage of being able to set optimum cell sizes for all particles,thus,the number of searching cells and contact check can be minimized.The optimum cell size of the DCM is the size that each cell has about 1 particle in it when two grids are used,0.3-0.6 particles in the case of more than three grids.The large-scale simulation of granular flow having a large particle size ratio will be possible by using the Distinct Cell Model.
机译:提出了离散元算法中用于接触检测的离散元细胞模型(DCM),以提高粒子大尺寸比时的计算速度。该模型具有多个网格,这些网格在三维上重叠,并且粒子将具有不同尺寸的盒子装箱在合适的网格单元中。测量该模型的接触检测时间,并将其与传统单元模型的接触检测时间进行比较,以模拟旋转的dram。常规细胞模型;例如,当颗粒的大小比为d_(max)/ d_(min)= 15时,加速比约为25。无论颗粒数目如何,加速比都随着粒径比的增加而增加该模型的优点是可以为所有粒子设置最佳像元大小,因此可以将搜索像元的数量和接触检查最小化。DCM的最佳像元大小是每个像元中大约有1个粒子的大小。一世当使用两个格栅时,在三个以上格栅的情况下为0.3-0.6颗粒。通过使用离散单元模型,可以大规模模拟具有较大粒径比的颗粒流。

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