首页> 中文期刊> 《无机非金属材料(英文)》 >Prediction of Particles-Air Movement in Silo during Filling Operation

Prediction of Particles-Air Movement in Silo during Filling Operation

             

摘要

Awareness of dust explosion hazards during silo filling operation is important for safety measures. Thus, information on particles-air flow field is required to assess the likelihood of the hazard. Flow field visualization via experimental investigation associated with difficulties and risks. Hence, in the present study, a modeling formulation using commercial computational fluid dynamics (CFD) code, FLUENT software was employed to predict an insight of flow field distribution, in terms of mean and root mean square (RMS) velocities vectors in cylindrical silo during axial filling. According to the simulation results, predicted flow field has a great influence to the silo height and distance to the silo wall due to gravitational force and movement of fugitive dust and re-circulation of air. The results showed that the predicted data were in very good agreement with experimental data obtained from the literature. The maximum error was around 10%. The study has gone some way towards enhancing our understanding of the particles-air behavior inside industrial equipments during filling operation.

著录项

  • 来源
    《无机非金属材料(英文)》 |2014年第3期|21-27|共7页
  • 作者单位

    Faculty of Chemical & Natural Resources Engineering;

    University Malaysia Pahang;

    Gambang;

    Malaysia;

    Faculty of Chemical & Natural Resources Engineering;

    University Malaysia Pahang;

    Gambang;

    Malaysia;

    Center of Excellence for Advanced Research in Fluid Flow (CARIFF);

    University Malaysia Pahang;

    Gambang;

    Malaysia;

    Faculty of Chemical Engineering Technology;

    TATI University College;

    Kemaman;

    Malaysia;

    Faculty of Chemical & Natural Resources Engineering;

    University Malaysia Pahang;

    Gambang;

    Malaysia;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 肿瘤学;
  • 关键词

    Particles-Air; Flow; Field; CFD; Filling; Silo;

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