Mass discharge rate of granular flow in eccentric silos with different side wall friction
ID:48 View Protection:ATTENDEE Updated Time:2024-04-09 22:09:23 Hits:549 Oral Presentation

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Abstract
There has been sufficient research on the factors that affect the mass discharge rate (MDR) of particles in silos, but the relevant physical mechanism has always been lacking. In current works, a mathematical model is established between macroscopic MDR and microscopic wall friction by changing the side wall materials of the eccentric silo. Thus achieving control over a range of up to 40% variation in mass discharge rate. Furthermore, the velocity of particles is measured using the optical flow method, then the structure of free-fall arch and the velocity of particles on the arch are obtained. It is revealed that the variation of MDR is caused by the change in geometric structure of free-fall arch. Surprisingly, the velocity of particles on the arch is the same at different heights under different MDR. The reason is that under high frictional coefficient, the gravitational potential energy of particles is more dissipated in the rotational motion caused by resistance. This work explains for the first time the regulation mechanism of the frictional coefficient on MDR, and provides a data reference for improving the theoretical model of MDR.
Keywords
Frictional coefficient; Mass discharge rate; Free-fall arch; Eccentric silos
Speaker
孙歌
上海理工大学

Submission Author
孙歌 上海理工大学
杨晖 上海健康医学院
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Important Date
  • Conference Date

    May 31

    2024

    to

    Jun 03

    2024

  • Jun 03 2024

    Abstract Submission Deadline

  • Jun 03 2024

    Draft paper submission deadline

  • Jun 03 2024

    Registration deadline

Sponsored By
Panel of Computational Mechanics on Granular Materials
Working Party of Computational Mechanics
Chinese Society of Theoretical and Applied Mechanics
Organized By
Hohai University
Dalian University of Technology
Chinese Society of Particuology
Jiangsu Society of Theoretical and Applied Mechanics
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