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- W2052672566 abstract "Stochastic simulations of soot formation were performed for the combustion of natural gas in a glow-assisted direct-injection diesel engine. A simple fluid dynamic method was employed, which describes turbulent mixing by random collision and coalescence of individual fluid cells. The composition of each fluid cell is homogeneous and changes with time under the control of the chemical kinetics. The reaction mechanism was comprised of three parts, each reduced with a different method, keeping the chemistry and physics as uncompromised as possible. The computational results demonstrate that the model of soot formation, developed and tested on laminar premixed flames, is capable of predicting the right amount of soot produced under the conditions of turbulent combustion. The model predicts that soot mass is mostly gained at rather high temperatures, 2100–2400 K, and a narrow range of fuel-air equivalence ratios, 2.6–2.8. The production of soot in diesel combustion was found to be controlled by particle nucleation, mass growth by surface reactions of acetylene, and surface oxidation by OH." @default.
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- W2052672566 date "1994-01-01" @default.
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- W2052672566 title "Reduced mechanism of soot formation—Applicationto natural gas-fueled diesel combustion" @default.
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- W2052672566 doi "https://doi.org/10.1016/s0082-0784(06)80730-7" @default.
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