Assessment of the Influence of GDI Injection System Parameters on Soot Emission and Combustion Stability through a Numerical and Experimental Approach
The next steps of the current European and US legislation, EURO 6c and LEV III, and the incoming new test cycles will impose more severe restrictions on pollutant emissions for Gasoline Direct Injection (GDI) engines. In particular, soot emission limits will represent a challenge for the development...
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Published in: | SAE International journal of engines Vol. 8; no. 5; pp. 2078 - 2088 |
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SAE International
06-09-2015
SAE International, a Pennsylvania Not-for Profit |
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Abstract | The next steps of the current European and US legislation, EURO 6c and LEV III, and the incoming new test cycles will impose more severe restrictions on pollutant emissions for Gasoline Direct Injection (GDI) engines. In particular, soot emission limits will represent a challenge for the development of this kind of engine concept, if injection and after-treatment systems costs are to be minimized at the same time. The paper illustrates the results obtained by means of a numerical and experimental approach, in terms of soot emissions and combustion stability assessment and control, especially during catalyst-heating conditions, where the main soot quantity in the test cycle is produced. A number of injector configurations has been designed by means of a CAD geometrical analysis, considering the main effects of the spray target on wall impingement. The numerical CFD simulation has helped the definition of the injection system and of its control settings for a given operating condition, in terms of start of injection, injection pressure and number of pulses per stroke. Engine test bench experiments have finally been used to validate the numerical results, and to further optimize the injection system calibration in order to minimize soot emissions, while respecting combustion stability constraints. The main results are presented in the paper. |
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AbstractList | The next steps of the current European and US legislation, EURO 6c and LEV III, and the incoming new test cycles will impose more severe restrictions on pollutant emissions for Gasoline Direct Injection (GDI) engines. In particular, soot emission limits will represent a challenge for the development of this kind of engine concept, if injection and after-treatment systems costs are to be minimized at the same time. The paper illustrates the results obtained by means of a numerical and experimental approach, in terms of soot emissions and combustion stability assessment and control, especially during catalyst-heating conditions, where the main soot quantity in the test cycle is produced. A number of injector configurations has been designed by means of a CAD geometrical analysis, considering the main effects of the spray target on wall impingement. The numerical CFD simulation has helped the definition of the injection system and of its control settings for a given operating condition, in terms of start of injection, injection pressure and number of pulses per stroke. Engine test bench experiments have finally been used to validate the numerical results, and to further optimize the injection system calibration in order to minimize soot emissions, while respecting combustion stability constraints. The main results are presented in the paper. |
ArticleNumber | 2015-24-2422 |
Author | Businaro, Andrea Picerno, Mario Di Gioia, Rita Cavina, Nicolo Papaleo, Domenico Moro, Davide Bonandrini, Giovanni |
Author_xml | – sequence: 1 givenname: Nicolo surname: Cavina fullname: Cavina, Nicolo organization: University of Bologna – sequence: 2 givenname: Andrea surname: Businaro fullname: Businaro, Andrea organization: University of Bologna – sequence: 3 givenname: Davide surname: Moro fullname: Moro, Davide organization: University of Bologna – sequence: 4 givenname: Rita surname: Di Gioia fullname: Di Gioia, Rita organization: Magneti Marelli Powertrain SPA – sequence: 5 givenname: Giovanni surname: Bonandrini fullname: Bonandrini, Giovanni organization: Magneti Marelli Powertrain SPA – sequence: 6 givenname: Domenico surname: Papaleo fullname: Papaleo, Domenico organization: Magneti Marelli Powertrain SPA – sequence: 7 givenname: Mario surname: Picerno fullname: Picerno, Mario organization: Magneti Marelli Powertrain SPA |
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CitedBy_id | crossref_primary_10_1016_j_scitotenv_2020_137302 crossref_primary_10_1177_14680874211024476 crossref_primary_10_1115_1_4036301 crossref_primary_10_1016_j_fuel_2020_119784 |
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SubjectTerms | Calibration Charge flow devices Combustion stability Control stability Emission standards Emissions control Engine tests Engines Guanine nucleotide dissociation inhibitors Legislation Particulate emissions Pollutants Rockets Smoke Soot Stability analysis Wetting |
Title | Assessment of the Influence of GDI Injection System Parameters on Soot Emission and Combustion Stability through a Numerical and Experimental Approach |
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