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Featured researches published by Haifeng Liu.


Combustion Science and Technology | 2014

A Reduced Chemical Kinetic Mechanism for Low Temperature Diesel Combustion and Soot Emissions

Jing Luo; Mingfa Yao; Haifeng Liu

A reduced diesel surrogate fuel chemical kinetic mechanism of n-heptane/toluene/1-hexene including poly-aromatic hydrocarbons (PAHs) formation was developed for prediction of the diesel combustion process and soot emissions. The proposed mechanism, which includes 60 species and 123 reactions, agrees well with experimental ignition delays in shock tubes. The proposed mechanism was coupled with the KIVA-3V Release 2 computational fluid dynamics (CFD) code to predict the combustion process and soot emissions in constant volume spray chamber and diesel direct injection combustion cases. The simulation results predict the combustion processes for diesel fuel under various conditions well. However, the predicted soot emissions have notable deviations compared to the experimental data when C2H2 or phenanthrene (A3) were chosen as precursors in the soot model at lower oxygen concentration conditions. The predicted soot emissions at different oxygen concentrations have better agreement with the experimental data when pyrene (A4) was chosen as the soot precursor. Compared to C2H2 or A3, A4 is a more suitable precursor for soot predictions in the LTC simulations. The overall results show that the present mechanism can be used to predict the combustion process and soot emissions of low temperature diesel combustion.


Energy | 2013

Experimental study on combustion and emission characteristics of a diesel engine fueled with 2,5-dimethylfuran–diesel, n-butanol–diesel and gasoline–diesel blends

Guisheng Chen; Yinggang Shen; Quanchang Zhang; Mingfa Yao; Zunqing Zheng; Haifeng Liu


Applied Energy | 2013

Experimental investigation of the effects of diesel injection strategy on gasoline/diesel dual-fuel combustion

Shuaiying Ma; Zunqing Zheng; Haifeng Liu; Quanchang Zhang; Mingfa Yao


Applied Energy | 2013

Effects of n-butanol, 2-butanol, and methyl octynoate addition to diesel fuel on combustion and emissions over a wide range of exhaust gas recirculation (EGR) rates

Haifeng Liu; Shanju Li; Zunqing Zheng; Jia Xu; Mingfa Yao


Energy | 2014

Experimental and simulation investigation of the combustion characteristics and emissions using n-butanol/biodiesel dual-fuel injection on a diesel engine.

Haifeng Liu; Xin Wang; Zunqing Zheng; Jingbo Gu; Hu Wang; Mingfa Yao


Energy | 2012

Experimental study of n-butanol addition on performance and emissions with diesel low temperature combustion

Quanchang Zhang; Mingfa Yao; Zunqing Zheng; Haifeng Liu; Jia Xu


Fuel | 2013

Combustion and emissions of 2,5-dimethylfuran addition on a diesel engine with low temperature combustion

Quanchang Zhang; Guisheng Chen; Zunqing Zheng; Haifeng Liu; Jia Xu; Mingfa Yao


Energy | 2013

Effects of fuel properties on combustion and emissions under both conventional and low temperature combustion mode fueling 2,5-dimethylfuran/diesel blends

Haifeng Liu; Jia Xu; Zunqing Zheng; Shanju Li; Mingfa Yao


Applied Thermal Engineering | 2012

Influence of temperature and mixture stratification on HCCI combustion using chemiluminescence images and CFD analysis

Haifeng Liu; Zhaolei Zheng; Mingfa Yao; Peng Zhang; Zunqing Zheng; Bangquan He; Yongli Qi


Fuel | 2012

Experimental and numerical study on suitable diesel fuel surrogates in low temperature combustion conditions

Jing Luo; Mingfa Yao; Haifeng Liu; Binbin Yang

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