• Title of article

    Co-oxidation in the auto-ignition of primary reference fuels and n-heptane/toluene blends

  • Author/Authors

    Johan Andrae، نويسنده , , David Johansson، نويسنده , , Pehr Bjornbom، نويسنده , , Per Risberg، نويسنده , , Gautam Kalghatgi، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2005
  • Pages
    20
  • From page
    267
  • To page
    286
  • Abstract
    Auto-ignition of fuel mixtures was investigated both theoretically and experimentally to gain further understanding of the fuel chemistry. A homogeneous charge compression ignition (HCCI) engine was run under different operating conditions with fuels of different RON and MON and different chemistries. Fuels considered were primary reference fuels and toluene/n-heptane blends. The experiments were modeled with a single-zone adiabatic model together with detailed chemical kinetic models. In the model validation, co-oxidation reactions between the individual fuel components were found to be important in order to predict HCCI experiments, shock-tube ignition delay time data, and ignition delay times in rapid compression machines. The kinetic models with added co-oxidation reactions further predicted that an n-heptane/toluene fuel with the same RON as the corresponding primary reference fuel had higher resistance to auto-ignition in HCCI combustion for lower intake temperatures and higher intake pressures. However, for higher intake temperatures and lower intake pressures the n-heptane/toluene fuel and the PRF fuel had similar combustion phasing.
  • Keywords
    Homogeneous charge compression ignition , Primary reference fuels , Co-oxidation , HCCI , Auto-ignition , toluene , Chemkin , n-Heptane , Fuel chemistry
  • Journal title
    Combustion and Flame
  • Serial Year
    2005
  • Journal title
    Combustion and Flame
  • Record number

    415051