The impact of multi-injection events on a compression-ignition engine using ducted fuel injection: A numerical and experimental study

Ducted fuel injection (DFI) is a technology to curtail soot formation from diesel combustion while mitigating its typical trade-off with nitrogen oxides (NOx). Previous studies have demonstrated its potential in both vessel and compression-ignition (CI) engine applications relying on simple single-injections rather than multi-injection (MI) strategies. Consequently, injection strategy optimization remains an open question. This study examines the interaction between MI strategies and DFI through a combined approach employing analysis of experimental in-vessel data and 3D computational fluid dynamics (CFD) engine simulations. The analysis was conducted by considering the impact of pilot and post injections on DFI separately, exploring variations in dwell time and mass share. The findings indicate that, when pilot injection is introduced, DFI remains effective in curtailing engine-out soot emissions, while NOx emissions are less sensitive to pilot injection calibration than in free spray injection (FSI). Similarly, post injections can be successfully employed with DFI to further reduce soot emissions, although a different optimal calibration may be required compared to the FSI. Overall, this study suggests that DFI can be effectively coupled with MI strategies, and that DFI-oriented calibration adjustments may unlock additional benefits, representing a significant step toward its deployment in series-production CI engines.

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Publication Details

Journal
Fuel Processing Technology
Published
2026-09-25
DOI
https://doi.org/10.1016/j.fuproc.2026.108602
Primary Topic
Advanced Combustion Engine Technologies
Type
article
Field-Weighted Citation Impact
0.00

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article

The impact of multi-injection events on a compression-ignition engine using ducted fuel injection: A numerical and experimental study

C. J. Mueller, C. Van Godbold, A. Piano, F. Millo et al.
Fuel Processing Technology
Advanced Combustion Engine Technologies
article

The impact of multi-injection events on a compression-ignition engine using ducted fuel injection: A numerical and experimental study

C. J. Mueller, C. Van Godbold, A. Piano, F. Millo, Segatori C., M. Orlando
article en

Abstract

Ducted fuel injection (DFI) is a technology to curtail soot formation from diesel combustion while mitigating its typical trade-off with nitrogen oxides (NOx). Previous studies have demonstrated its potential in both vessel and compression-ignition (CI) engine applications relying on simple single-injections rather than multi-injection (MI) strategies. Consequently, injection strategy optimization remains an open question. This study examines the interaction between MI strategies and DFI through a combined approach employing analysis of experimental in-vessel data and 3D computational fluid dynamics (CFD) engine simulations. The analysis was conducted by considering the impact of pilot and post injections on DFI separately, exploring variations in dwell time and mass share. The findings indicate that, when pilot injection is introduced, DFI remains effective in curtailing engine-out soot emissions, while NOx emissions are less sensitive to pilot injection calibration than in free spray injection (FSI). Similarly, post injections can be successfully employed with DFI to further reduce soot emissions, although a different optimal calibration may be required compared to the FSI. Overall, this study suggests that DFI can be effectively coupled with MI strategies, and that DFI-oriented calibration adjustments may unlock additional benefits, representing a significant step toward its deployment in series-production CI engines.

Fuel Processing TechnologyVol. 292
Georgia Institute of Technology (US), Politecnico di Torino (IT), Sandia National Laboratories California (US)
U.S. Department of Energy
Affordable and clean energy
Openalex Percentile: Top 21%
Advanced Combustion Engine Technologies
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The impact of multi-injection events on a compression-ignition engine using ducted fuel injection: A numerical and experimental study — C. J. Mueller, C. Van Godbold, et al. · Fuel Processing Technology (2026) | TGRS Research Map | TGRS