• Title of article

    Combustion characteristics and influential factors of isooctane active-thermal atmosphere combustion assisted by two-stage reaction of n-heptane

  • Author/Authors

    Lu، نويسنده , , Xingcai and Ji، نويسنده , , Libin and Ma، نويسنده , , Junjun and Zhou، نويسنده , , Xiaoxin and Huang، نويسنده , , Zhen، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2011
  • Pages
    14
  • From page
    203
  • To page
    216
  • Abstract
    This paper presents an experimental study on the isooctane active-thermal atmosphere combustion (ATAC) which is assisted by two-stage reaction of n-heptane. The active-thermal atmosphere is created by low- and high-temperature reactions of n-heptane which is injected at intake port, and isooctane is directly injected into combustion chamber near the top dead center. The effects of isooctane injection timing, active-thermal atmosphere intensity, overall equivalence ratio, and premixed ratio on combustion characteristics and emissions are investigated. The experimental results reveal that, the isooctane ignition and combustion can be classified to thermal atmosphere combustion, active atmosphere combustion, and active-thermal atmosphere combustion respectively according to the extent of n-heptane oxidation as well as effects of isooctane quenching and charge cooling. n-Heptane equivalence ratio, isooctane equivalence ratio and isooctane delivery advance angle are major control parameters. In one combustion cycle, the isooctane ignited and burned after those of n-heptane, and then this combustion phenomenon can also be named as dual-fuel sequential combustion (DFSC). The ignition timing of the overall combustion event is mainly determined by n-heptane equivalence ratio and can be controlled in flexibility by simultaneously adjusting isooctane equivalence ratio. The isooctane ignition regime, overall thermal efficiency, and NOx emissions show strong sensitivity to the fuel delivery advance angle between 20 °CA BTDC and 25 °CA BTDC.
  • Keywords
    Combustion characteristics , Primary reference fuels (PRFs) , Dual-fuel sequential combustion (DFSC) , Two-stage reaction , Active-thermal atmosphere combustion (ATAC)
  • Journal title
    Combustion and Flame
  • Serial Year
    2011
  • Journal title
    Combustion and Flame
  • Record number

    2275471