• Title of article

    Effect of water-in-heavy fuel oil emulsion on the non-reacting spray characteristics under different ambient conditions and injection pressures: A CFD study

  • Author/Authors

    Nowruzi, H Department of Marine Technology - Amirkabir University of Technology Tehran , Ghadimi, P Department of Marine Technology - Amirkabir University of Technology Tehran

  • Pages
    15
  • From page
    2626
  • To page
    2640
  • Abstract
    Emulsfied fuel is one of the main strategies to substitute the conventional fossil fuel for the purpose of emission control and enhancement of fuel efciency. Accordingly, non-reacting spray characteristics of water-in-Heavy Fuel Oil (HFO) emulsion are numerically investigated in the present study via CFD analysis. Three different volumetric percentages of water in HFO are investigated and compared with pure HFO. Eects of four different injection pressures on injected fuel spray characteristics are studied. Moreover, in fluences of three different ambient back pressures and two ambient temperatures are considered. For these purposes, the characteristics of spray penetration, cone angle, volume, and SMD are evaluated through the analyses of non-dimensional numbers. For modeling the interaction of the fuel discrete phase and the gaseous continuous phase, Eulerian- Lagrangian multiphase formulation in OpenFOAM CFD toolbox is implemented. Fuel droplet tracking in Lagrangian scheme is applied by Lagrangian Particle Tracking method. Also, KH-RT as a hybrid breakup model for liquid fuel core breakup and standard model of k ???? " in RANS for turbulence modeling are utilized. Numerical results are validated against existing experimental data with suitable accordance. Longer spray penetration length, larger cone angle, and greater spray volume are achieved for the emulsifed fuels.
  • Keywords
    Non-reacting spray characteristic , Water in heavy fuel oil emulsion , Breakup , High injection pressure , Back pressure
  • Journal title
    Astroparticle Physics
  • Serial Year
    2016
  • Record number

    2416762