• Title of article

    Prediction of Erosion Rate in Gas-Solid Flow Using Computational Fluid Dynamics (CFD): Focus on Geometrical Parameters

  • Author/Authors

    Jalalvandi ، K. Faculty of Petroleum and Chemical Engineering - Razi University , Parvareh ، A. Faculty of Petroleum and Chemical Engineering - Razi University

  • From page
    33
  • To page
    49
  • Abstract
    In this study, the fluid flow together with solid particles has been studied using Computational Fluid Dynamics (CFD). The gas-solid flow (air and sand particles with the size of 150 µm) inside a 76.2 mm diameter pipe with various bend angles including 45, 60, 90, 120, 135, and 180° was modelled at the fluid flow velocity of 11 m/s. The k-ω turbulence model was employed to model the flow turbulence and the E/CRC erosion model have been used to predict erosion rates. The hydrodynamics of the flow, the particles motion as well as the probable erosion regions were predicted. The CFD simulation results showed that increasing the curvature angle increases the erosion rate. While, increasing the pipe diameter, decreases the erosion rate. The maximum erosion rate was predicted at the end part of the curvature for 45 and 60 ° angles, while it was observed in the middle region for 120 and 135 ° curvatures. Finally, the maximum erosion rate for the 180 ° curvature was observed in two regions at the end of the first and second half. Using these results, precautionary considerations for the erosion, and the suitable plans for the repair and maintenance of the equipment can be offered.
  • Keywords
    Erosion , Fluid flow , Solid particles , Modelling , Corrosion , CFD , COMSOL
  • Journal title
    Iranian Journal of Chemical Engineering
  • Journal title
    Iranian Journal of Chemical Engineering
  • Record number

    2768576