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    Please use this identifier to cite or link to this item: https://ir.lib.ncu.edu.tw/handle/987654321/104708


    Title: Convection behavior of non-spherical particles in a vibrating bed: Discrete element modeling and experimental validation
    Authors: 蕭述三;Chung, Y.C.;Liao, H.H.;Hsiau, S.S.
    Contributors: 秘書室
    Keywords: Applied sciences;Beads;Chemical engineering;Computer simulation;Contact;Convection modes;Convection phenomenon;Damping;DEM;Discrete element method;energy;Exact sciences and technology;Experimental validation;Fluctuation;friction;laboratory techniques;Miscellaneous;Non-spherical particles;simulation models;Solid-solid systems;temperature;Transport properties;Transport property;Vibration test
    Date: 2013-03-01
    Issue Date: 2026-04-23 11:56:08 (UTC+8)
    Publisher: Elsevier;Amsterdam: Elsevier B.V
    Abstract: 摘要: This paper proposes a discrete element method (DEM) model to simulate the convection phenomenon of non-spherical particles in a vibrating bed. The corresponding physical experiments were carried out in our previous study. The discrete element simulation results were validated with the experimental results. The non-spherical particles were paired particles, composed of two single beads. The proposed discrete element model adopted Hertz–Mindlin no slip contact force model to model particle collision and multi-sphere method to exactly represent the shape of paired particles. The local damping as well as contact friction and contact damping were incorporated to properly dissipate the system energy of non-spherical granular assemblies. To attain a high level quantitative validation, the important particle properties required for DEM simulation were not simply assumed but measured directly in laboratory tests. The transport properties of paired particles in a vibrated bed, involving local average velocity, local fluctuation velocity, granular temperature, fluctuation velocity distribution and self-diffusion coefficient, were analyzed. The comparison between the DEM results and experimental results was made and discussed in this paper. Both results show the convection phenomena of paired particles in a vibrating bed and the majority of transport properties show good to excellent match, thus giving a quantitative validation for the discrete element simulation of the problem studied here. This proposed discrete element model is shown to provide plausible results and can directly be applicable to realistic industrial problems comprising many non-spherical particles. This paper proposes a DEM model to simulate the convection phenomenon of non-spherical particles in a vibrating bed. The following figure shows the local translational velocity fields of POM paired particles for experiment and simulation. The DEM predicted translational velocity field matched well with the measured velocity field. [Display omitted] ► Simulate the convection phenomena of non-spherical particles in a vibrating bed ► Propose a DEM model with local damping as well as contact damping and friction ► Use the local damping to account for the air drag force induced by vibration ► Simplify this two-phase flow problem into one-phase flow problem ► Predict the translational velocity field within 8% difference to the test results
    出版者: Amsterdam: Elsevier B.V
    出版日期: 2013-03-01
    出處: Powder Technology, 2013-03, Vol.237, p.53-66
    資源來源: Elsevier ScienceDirect Journals Complete - Autoholdings
    版權: 2012 Elsevier B.V.
    版權: 2014 INIST-CNRS
    識別號: ISSN: 0032-5910
    識別號: EISSN: 1873-328X
    識別號: DOI: 10.1016/j.powtec.2012.12.052
    識別號: CODEN: POTEBX
    Appears in Collections:[Office of Secretariat] journal & Dissertation

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