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首页> 外文期刊>Computer Modeling in Engineering & Sciences >Developing Mechanistic Understanding of Granular Behaviour in Complex Moving Geometry using the Discrete Element Method. Part A: Measurement and Reconstruction of Turbula Mixer Motion using Positron Emission Particle Tracking
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Developing Mechanistic Understanding of Granular Behaviour in Complex Moving Geometry using the Discrete Element Method. Part A: Measurement and Reconstruction of Turbula Mixer Motion using Positron Emission Particle Tracking

机译:使用离散元方法发展对复杂运动几何中的颗粒行为的机械理解。 A部分:使用正电子发射粒子跟踪测量和重建湍流混合器的运动

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In this work the complex motion of the Turbula(r) mixer has been measured by Multiple-Positron Emission Particle Tracking (Multiple PEPT) in order to set-up a DEM numerical model. Positron emitting radioactive tracers were attached to three of the pivot bearings on the shaft of the mixer to enable the rotation and translation of the mixer chamber to be tracked in the PEPT camera. The measured movement was mathematically reconstructed and imported into DEM in order to apply the same movement to the modelled vessel. The three-dimensional motion of particles in a vessel located in the Turbula mixer was then calculated using Discrete Element Modelling (DEM). The DEM code used in this work is a commercially available package provided by DEM-Solutions (EDEM). Good qualitative agreements have been found between the DEM simulations and experimental data from the literature for the degree of segregation in bi-disperse particle mixtures at long mixing times.
机译:在这项工作中,通过建立多正电子发射粒子跟踪(Multiple PEPT)测量了Turbula(r)混合器的复杂运动,以建立DEM数值模型。将正电子发射放射性示踪剂连接到混合器轴上的三个枢轴轴承上,以使混合器腔室的旋转和平移能够在PEPT摄像机中进行跟踪。对测得的运动进行数学重建,然后导入到DEM中,以将相同的运动应用于建模的容器。然后使用离散元素建模(DEM)计算位于Turbula混合器中的容器中粒子的三维运动。这项工作中使用的DEM代码是DEM-Solutions(EDEM)提供的可商业购买的软件包。在DEM模拟和文献的实验数据之间,发现了长时间混合下双分散颗粒混合物中偏析程度的良好定性一致性。

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