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Effect of Particle Shape on Repose Angle Based on Hopper Flow Test and Discrete Element Method

机译:基于料斗流动试验和离散元件的粒子形状对旋转角度的影响

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摘要

The repose angle of granular material is an essential parameter to understand the microbehavior of the granular material and, then, to relate it with the macrobehavior. In this study, a self-design large-scale hopper flow test apparatus has been developed to measure the repose angle of the ballast using a fixed funnel method. Then, the numerical simulation using the realistic clump is compared with the experimental test to prove its validity. Meanwhile, the idealized clumps with custom shape parameters, including roughness of particle and ground, angularity, aspect ratio, and sphericity, were chosen to analyze the influences of particle shape on the repose angle. The results show that the angle of repose generally tends to increase with the increase of the friction coefficient of particles and the roughness of the ground. With the increase of the angularity from 0 to 4, the pile height and the repose angle increase. Meanwhile, the extended area decreases accordingly. For cuboid particles, with aspect ratio increasing from 1.0 to 1.67, the angle of repose increases firstly and then maintains a constant between aspect ratio 1.25–1.67. For ellipsoid particles, the angle of repose decreases, then reaches a minimum at aspect ratio around 1.3, and finally increases.
机译:粒状材料的休息角是了解粒状材料的微骨的基本参数,然后用大象剃须与Macrobehavior联系起来。在该研究中,已经开发了一种自我设计的大规模料斗流动测试装置来使用固定漏斗法测量镇流器的休息角。然后,将使用现实丛的数值模拟与实验测试进行比较以证明其有效性。同时,选择具有定制形状参数的理想化丛,包括粒子和地,角度,纵横比和球形度的粗糙度,以分析颗粒形状对旋转角度的影响。结果表明,随着颗粒摩擦系数的增加和地面的粗糙度的增加,休息的角度通常趋于增加。随着从0到4的角度增加,桩高和休置角度增加。同时,扩展区域相应地减少。对于长方体颗粒,具有从1.0至1.67增加的宽高比,Repose的角度首先增加,然后在纵横比1.25-1.67之间保持恒定。对于椭圆形颗粒,休息角减小,然后以宽高的比率达到最小值1.3,最后增加。

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