4.2 Article

Study on screening process and segregation mechanism of wet sand and gravel particles based on discrete element method

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GRANULAR MATTER
卷 25, 期 4, 页码 -

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SPRINGER
DOI: 10.1007/s10035-023-01370-7

关键词

Wet particles; Discrete element method; Screening process; Segregation mechanism; Average distance

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The screening process and segregation mechanism of wet sand and gravel particles were studied using the discrete element method. The study found that wet screening process had higher screening efficiency and reduced dust pollution compared to dry screening process. The distribution of wet particles showed that triangular cone and ellipsoid particles were screened in the feeding and screening area. The segregation mechanism of different particles was obtained by comparing their average distances to the screen surface, and it was found that the square of velocity could also be used as an evaluation index for particle segregation.
To study the screening process and explore the segregation mechanism of wet sand and gravel particles, the screening of wet particles is carried out by discrete element method. The accurate parameter settings of wet particles are obtained by parameter calibration of the cylinder lifting. Then, the distribution of wet particles shows the triangular cone and ellipsoid particles have been screened in feeding and screening area. Moreover, there is obvious splash of particles in dry screening while there is no splash in wet screening, which explains the serious dust pollution in dry screening process. Meanwhile, the number of triangular cone and ellipsoid particles in feeding and screening area in wet screening process is more than that in dry screening process, which indicates wet screening process has higher screening efficiency. By comparing the average distances of different particles to the screen surface, the segregation mechanism of different particles is obtained. Furthermore, the square of velocity trends are in good agreement with the average distances of particles, which indicates that square of velocity can also be used as the evaluation index for particle segregation. The above researches provide a reference for optimization of the wet screening process parameters.

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