4.6 Article

Jet-stirred reactor oxidation of alkane-rich FACE gasoline fuels

Journal

PROCEEDINGS OF THE COMBUSTION INSTITUTE
Volume 36, Issue 1, Pages 517-524

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.proci.2016.05.040

Keywords

Gasolines; FACE A and C fuels; Surrogate fuels; PRF; Kinetic model

Funding

  1. King Abdullah University of Science and Technology (KAUST)
  2. Saudi Aramco under FUELCOM program
  3. European Research Council under European Community / ERC [291049 - 2G-CSafe]

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Understanding species evolution upon gasoline fuel oxidation can aid in mitigating harmful emissions and improving combustion efficiency. Experimentally measured speciation profiles are also important targets for surrogate fuel kinetic models. This work presents the low-and high-temperature oxidation of two alkane-rich FACE gasolines (A and C, Fuels for Advanced Combustion Engines) in a jet-stirred reactor at 10 bar and equivalence ratios from 0.5 to 2 by probe sampling combined with gas chromatography and Fourier Transformed Infrared Spectrometry analysis. Detailed speciation profiles as a function of temperature are presented and compared to understand the combustion chemistry of these two real fuels. Simulations were conducted using three surrogates (i.e., FGA2, FGC2, and FRF 84), which have similar physical and chemical properties as the two gasolines. The experimental results reveal that the reactivity and major product distributions of these two alkane-rich FACE fuels are very similar, indicating that they have similar global reactivity despite their different compositions. The simulation results using all the surrogates capture the two-stage oxidation behavior of the two FACE gasolines, but the extent of low temperature reactivity is over-predicted. The simulations were analyzed, with a focus on the n-heptane and n-butane sub-mechanisms, to help direct the future model development and surrogate fuel formulation strategies. (C) 2016 by The Combustion Institute. Published by Elsevier Inc.

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