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DEM modelling of silo load asymmetry due to eccentric filling and discharge

机译:偏心填充和卸料引起的筒仓载荷不对称性的DEM建模

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摘要

The discrete element method is a promising approach to simulation of certain mechanical phenomena that cannot be modelled by means of the continuum mechanics approach. One of these phenomena is the anisotropy of loads exerted by granular deposits on the elements of a storage structure. In this project, DEM simulations were performed to examine the asymmetry of silo wall loads during eccentric filling and discharge of a model silo. The silo, with a diameter of approximately 26 particle diameters and a height of 2.5 silo diameters, was filled with 30,000 spherical particles. The configuration of the simulations reflected the conditions (but not the scale) of earlier laboratory tests on the filling and discharge of a 2.44-m diameter model flat-floor silo used for storage of wheat. The simulations were observed to adequately reproduce the qualitative behaviour of the loads during filling and discharge in the laboratory tests. The simulations underestimated the vertical wall loads compared with the experimental results. This underestimate is likely a result of the perfect spherical shape of the particles and the relatively weak damping of the translational and rotary vibrations in the test model.
机译:离散元法是一种模拟某些机械现象的有前途的方法,这些方法无法通过连续力学方法来建模。这些现象之一是颗粒状沉积物在存储结构的元素上施加的载荷的各向异性。在该项目中,进行了DEM模拟以检查模型筒仓的偏心填充和卸料过程中筒仓壁载荷的不对称性。直径约26个粒径,高度为2.5个料筒直径的料仓中装有30,000个球形颗粒。模拟的配置反映了较早的实验室测试的条件(但没有规模),该条件用于填充和排放直径为2.44 m的用于小麦储存的模型平底仓。在实验室测试中,观察到的模拟能够充分再现负载在填充和卸载过程中的定性行为。与实验结果相比,该模拟低估了垂直墙的荷载。这种低估可能是由于颗粒的球形完美,以及测试模型中平移和旋转振动的阻尼相对较弱。

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