Effects of fuel injection parameters on the performance of homogeneous charge compression ignition at low-load conditions

Author:

Keum SeungHwan1,Pal Pinaki2,Im Hong G3,Babajimopoulos Aristotelis4,Assanis Dennis N5

Affiliation:

1. General Motors R&D PSR Laboratory, Warren, MI, USA

2. Department of Mechanical Engineering, University of Michigan, Ann Arbor, MI, USA

3. Clean Combustion Research Center, Department of Mechanical Engineering, King Abdullah University of Science and Technology (KAUST), Thuwal, Saudi Arabia

4. Volvo Car Corporation, Göteborg, Sweden

5. Department of Mechanical Engineering, Stony Brook University, Stony Brook, NY, USA

Abstract

With the objective of enhancing the effectiveness of late fuel injection strategy in extending the low-load limit of homogeneous charge compression ignition engines, a numerical study is conducted to investigate the effects of fuel injection parameters, such as the injection pressure and spray cone angle, on the overall combustion efficiency and CO/NOx emissions. Closed-cycle engine simulations are performed incorporating detailed iso-octane reaction kinetics and combustion submodel based on the spray-interactive flamelet approach. Extensive parametric studies are conducted to provide a detailed map of the combustion efficiency and emission performance. In general, it is found that the in-cylinder charge stratification can be reduced by both an increased injection pressure and a wider spray cone angle, resulting in substantially lower NOx emissions and reasonably high combustion efficiency simultaneously. The present study demonstrates that an optimal adjustment of the two fuel injection parameters can result in significant extension of the low-load limit of homogeneous charge compression ignition through delayed fuel injection strategy.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Ocean Engineering,Aerospace Engineering,Automotive Engineering

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