Fuel reactivity controlled compression ignition (RCCI): A pathway to controlled high-efficiency clean combustion

S. L. Kokjohn, R. M. Hanson, D. A. Splitter, R. D. Reitz

Research output: Contribution to journalArticlepeer-review

844 Scopus citations

Abstract

A fuel reactivity controlled compression ignition (RCCI) concept is demonstrated as a promising method to achieve high efficiency - clean combustion. Engine experiments were performed in a heavy-duty test engine over a range of loads. Additionally, RCCI engine experiments were compared to conventional diesel engine experiments. Detailed computational fluid dynamics modelling was then used to explain the experimentally observed trends. Specifically, it was found that RCCI combustion is capable of operating over a wide range of engine loads with near zero levels of NOx and soot, acceptable pressure rise rate and ringing intensity, and very high indicated efficiency. For example, a peak gross indicated efficiency of 56 per cent was observed at 9.3 bar indicated mean effective pressure and 1300 rev/min. The comparison between RCCI and conventional diesel showed a reduction in NO x by three orders of magnitude, a reduction in soot by a factor of six, and an increase in gross indicated efficiency of 16.4 per cent (i.e. 7.9 per cent more of the fuel energy was converted to useful work). The simulation results showed that the improvement in fuel conversion efficiency was due both to reductions in heat transfer losses and improved control over the start- and end-of-combustion.

Original languageEnglish
Pages (from-to)209-226
Number of pages18
JournalInternational Journal of Engine Research
Volume12
Issue number3
DOIs
StatePublished - Jun 2011
Externally publishedYes

Funding

This work was supported by the Engine Research Center’s Diesel Engine Research Consortium, and by DOE grant DE-EE0000202 and the DOE Sandia Laboratories.

Keywords

  • Combustion
  • Engine performance
  • Fuel efficiency
  • HCCI
  • PCCI
  • Pollutant emissions reduction
  • Thermal efficiency

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