首页|Axial segregation characteristics and size-induced flow behavior of particles in a novel rotary drum with curved sidewalls

Axial segregation characteristics and size-induced flow behavior of particles in a novel rotary drum with curved sidewalls

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Particle mixing and segregation are common phenomena in rotary drums,which are challenging to be controlled and driven artificially in powder technology.In this work,the discrete element method(DEM)was applied to construct the novel rotary drum composed of different shaped curved sidewalls.By varying the operation parameters of particle and sidewall shapes as well as the length-to-diameter(L/D)ratio of drums,the axial mixing and segregation processes of binary size-induced particles were investigated.The results show that the axial flow velocity of the particle mixtures is noticeably weakened once the particle angularity increases,making the non-spherical particles to mix better in rotary drums compared to the spherical particles.Besides,in the short drums with size-induced spherical particles,the axial segregation characteristics are significantly enhanced by the convex sidewalls while suppressed by the concave sidewalls.However,for size-induced non-spherical particles,the axial segregation structure can be present in rotary drums with plane and concave sidewalls while not in drums with convex sidewalls.Moreover,the axial segregation band structure of spherical particles eventually increases proportionally with the increased drum L/D ratios.In contrast,the non-spherical particles cannot form obvious multi-proportional segregation bands.

Axial flow behaviorsSize-induced particlesCurved sidewallsNon-spherical particlesRotary drum

Qiuhua Miao、Wenchang Zhu、Yudong Cao、Peng Huang、Chaobin Hu、Minping Jia

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School of Mechanical Engineering,Southeast University,Nanjing,211189,China

Jiangsu Key Laboratory for Elevator Intelligent Safety,Changshu,215500,China

国家自然科学基金江苏省自然科学基金Jiangsu Province Elevator Intelligent Safety Key Construction Laboratory Open Project

51775109BK20221465JSKLESS202105

2024

颗粒学报(英文版)
中国颗粒学会 中国科学院过程工程研究所

颗粒学报(英文版)

CSTPCD
影响因子:0.632
ISSN:1674-2001
年,卷(期):2024.87(4)
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