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Discrete element method study of shear-driven granular segregation in a slowly rotating horizontal drum 被引量:4
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作者 Ram Chand Sithi V. Muniandy +1 位作者 Chiow San Wong Jasbir Singh 《Particuology》 SCIE EI CAS CSCD 2017年第3期89-94,共6页
Segregation and mixing of granular materials are complex processes and are not fully understood. Motivated by industrial need, we performed a simulation using the discrete element method to study size segregation of a... Segregation and mixing of granular materials are complex processes and are not fully understood. Motivated by industrial need, we performed a simulation using the discrete element method to study size segregation of a binary mixture of granular particles in a horizontal rotating drum. Particles of two dif- ferent sizes were poured into the drum until it was 50% full. Shear-driven segregation was induced by rotating the side-plates of the drum in the opposite direction to that of the cylindrical wall. We found that radial segregation diminished in these systems but did not completely vanish. In an ordinary rotating drum, a radial core of smaller particles is formed in the center of the drum, surrounded by larger revolving particles. In our system, however, the smaller particles were found to migrate toward the side-plates. The shear from anti-spinning side-plates reduces the voidage and increases the bulk density. As such, smaller particles in the mixer tend to move to denser regions. We varied the shear by changing the coefficient of friction on the side-plates to study the influence of shear rate on this migration. We also compared the extent of radial segregation with stationary side-plates and with side-plates moving in different angular directions. 展开更多
关键词 granular flow Discrete element method segregation Side-wall shear Rotating drum Mixing
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Effect of Thermal Convection on Density Segregation in Binary Granular Gases with Dissipative Lateral Walls
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作者 李睿 李杰 +1 位作者 戴伟 陈木青 《Chinese Physics Letters》 SCIE CAS CSCD 2017年第11期48-52,共5页
Molecular dynamics simulations are employed to investigate the effect of thermal convection induced only by dissipative lateral walls on density segregation of the strongly driven binary granular gases under low gravi... Molecular dynamics simulations are employed to investigate the effect of thermal convection induced only by dissipative lateral walls on density segregation of the strongly driven binary granular gases under low gravity conditions. It is found that the thermal convection due to dissipative lateral walls has significant influence on the segregation intensity of the system. The dominant factor in determining the degree of segregation achieved by the system is found to be the relative convection rate between differing species. Moreover, a qualitative explanation is proposed for the relationship between the thermal convection due to dissipative lateral walls and the observed segregation intensity profiles. 展开更多
关键词 Effect of Thermal Convection on Density segregation in Binary granular Gases with Dissipative Lateral Walls
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Prediction of segregation characterization based on granular velocity and concentration in rotating drum
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作者 Wenzheng Xiu Ra Li +3 位作者 Quan Chen Qicheng Sun Vladimir Zivkovic Hui Yang 《Particuology》 SCIE EI CAS CSCD 2023年第2期17-25,共9页
In a binary granular system composed of two types of particles with different granule sizes and the same density,particle sorting occurs easily during the flow process.The segregation pattern structure is mainly affec... In a binary granular system composed of two types of particles with different granule sizes and the same density,particle sorting occurs easily during the flow process.The segregation pattern structure is mainly affected by the granular velocity and granular concentration in the flow layer.This paper reports on the experimental velocity and concentration measurement results for spherical particles in a quasi-two-dimensional rotating drum.The relationship between the granular velocity along the depth direction of the flow layer and granular concentration was established to characterize structures with different degrees of segregation.The corresponding relationships between the granular velocity and concentration and the segregation pattern were further analyzed to improve the theoretical models of segregation(convection-diffusion model and continuous flow model)and provide a reference for granular segregation control in the production process. 展开更多
关键词 granular segregation Rotating drum granular velocity granular concentration
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Laboratory-scale investigation of the material distribution characteristics of landslide dams in U-shaped valleys
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作者 JIAN Fu-xian CAI Zheng-yin GUO Wan-li 《Journal of Mountain Science》 SCIE CSCD 2023年第3期688-704,共17页
Material distribution characteristics during sliding and depositing is particularly significative to investigate the internal structure and spatial variation of landslide dams,which are fundamentally determining the m... Material distribution characteristics during sliding and depositing is particularly significative to investigate the internal structure and spatial variation of landslide dams,which are fundamentally determining the mechanical and hydraulic behavior and the susceptibility to cause dam failure.However,limited by longevity shortages and special geographic environments,the material distribution characteristics and their formation mechanisms are difficult to observe in the field.Therefore,an experimental apparatus modeling a landslide dam was developed in this paper,designing three sampling methods with two valley states.The internal deposit characteristics,void ratio variation and relative content of the particle size range(PSR)were analyzed,and the mechanics of deposit structure were also delicately ascertained.The results indicate that granular material deposited in valley shows a structure of inverse grain size accumulation in both vertical and horizontal directions,exhibiting spatial variability of particle gradation and void ratio.The characteristic PSR decreases from 22-30 mm in the two-dimensional state to 10-14 mm in the threedimensional state.Vibration excitation and vibration sieve are the intrinsic mechanisms of granular flow segregation,intrinsically inducing the formation of inverse grading deposit structures.Consequently,spatial variability in size is mainly trig gered by segregation,whereas coarse particle content and deposition boundaries merely exacerbate the difference degree. 展开更多
关键词 Landslide dam IInverse grading structure granular flow segregation Material spatial variability Deposit characteristics
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Simulation of particle flow in a bell-less type charging system of a blast furnace using the discrete element method 被引量:17
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作者 Jianliang Zhang Jiayong Qiu +4 位作者 Hongwei Guo Shan Ren Hui Sun Guangwei Wang Zhengkai Gao 《Particuology》 SCIE EI CAS CSCD 2014年第5期167-177,共11页
A three-dimensional model was established by the discrete element method (DEM) to analyze the flow and segregation of particles in a charging process in detail. The simulation results of the burden falling trajector... A three-dimensional model was established by the discrete element method (DEM) to analyze the flow and segregation of particles in a charging process in detail. The simulation results of the burden falling trajectory obtained by the model were compared with the industrial charging measurements to validate the applicability of the model. The flow behavior of particles from the weighing hopper to the top layer of a blast furnace and the heaping behavior were analyzed using this model. A radial segregation index (RSI) was used to evaluate the extent of the size segregation in the charging process. In addition, the influence of the chute inclination angle on the size segregation and burden profile during the charging process was investigated. 展开更多
关键词 Discrete element method Blast furnace Bell-less charging system granular flow Size segregation
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