Optimization of Pre-Chamber Geometry and Operating Parameters in a Turbulent Jet Ignition Engine

被引:13
作者
Dilber, Viktor [1 ]
Sjeric, Momir [1 ]
Tomic, Rudolf [1 ]
Krajnovic, Josip [1 ]
Ugrinic, Sara [1 ]
Kozarac, Darko [1 ]
机构
[1] Univ Zagreb, Fac Mech Engn & Naval Architecture, Ivana Lucica 5, Zagreb 10002, Croatia
关键词
pre-chamber; lean combustion; turbulent jet ignition; 0D; 1D model; optimization; efficiency; NATURAL-GAS; COMBUSTION; SYSTEM;
D O I
10.3390/en15134758
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
A turbulent jet ignition engine enables operation with lean mixtures, decreasing nitrogen oxide (NOX) emissions up to 92%, while the engine efficiency can be increased compared to conventional spark-ignition engines. The geometry of the pre-chamber and engine operating parameters play the most important role in the performance of turbulent jet ignition engines and, therefore, must be optimized. The initial experimental and 3D CFD results of a single-cylinder engine fueled by gasoline were used for the calibration of a 0D/1D simulation model. The 0D/1D simulation model was upgraded to capture the effects of multiple flame propagations, and the evolution of the turbulence level was described by the new K-k-epsilon turbulence model, which considers the strong turbulent jets occurring in the main chamber. The optimization of the pre-chamber volume, the orifice diameter, the injected fuel mass in the pre-chamber and the spark timing was made over 9 different operating points covering the variation in engine speed and load with the objective of minimizing the fuel consumption while avoiding knock. Two optimization methods using 0D/1D simulations were presented: an individual optimization method for each operating point and a simultaneous optimization method over 9 operating points. It was found that the optimal pre-chamber volume at each operating point was around 5% of the clearance volume, while the favorable orifice diameters depended on engine load, with optimal values around 2.5 mm and 1.2 mm at stoichiometric mixtures and lean mixtures, respectively. Simultaneous optimization of the pre-chamber geometry for all considered operating points resulted in a pre-chamber volume equal to 5.14% of the clearance volume and an orifice diameter of 1.1 mm.
引用
收藏
页数:21
相关论文
共 27 条
[1]   Knock Limit Extension with a Gasoline Fueled Pre-Chamber Jet Igniter in a Modern Vehicle Powertrain [J].
Attard, William P. ;
Blaxill, Hugh ;
Anderson, Eric K. ;
Litke, Paul .
SAE INTERNATIONAL JOURNAL OF ENGINES, 2012, 5 (03) :1201-1215
[2]   A Turbulent Jet Ignition Pre-Chamber Combustion System for Large Fuel Economy Improvements in a Modern Vehicle Powertrain [J].
Attard, William P. ;
Fraser, Neil ;
Parsons, Patrick ;
Toulson, Elisa .
SAE INTERNATIONAL JOURNAL OF ENGINES, 2010, 3 (02) :20-37
[3]   Experimental study on knock sources in spark ignition engine with exhaust gas recirculation [J].
Bozic, Mladen ;
Vucetic, Ante ;
Sjeric, Momir ;
Kozarac, Darko ;
Lulic, Zoran .
ENERGY CONVERSION AND MANAGEMENT, 2018, 165 :35-44
[4]  
Bozza F, 2018, SAE technical paper, P1, DOI [10.4271/2018-01-0856, DOI 10.4271/2018-01-0856]
[5]   Optimal Calibration Strategy of a Hybrid Electric Vehicle Equipped with an Ultra-Lean Pre-Chamber SI Engine for the Minimization of CO2and Pollutant Emissions [J].
Bozza, Fabio ;
De Bellis, Vincenzo ;
Malfi, Enrica ;
Teodosio, Luigi ;
Tufano, Daniela .
ENERGIES, 2020, 13 (15)
[6]   CFD Analysis of the Fuel-Air Mixture Formation Process in Passive Prechambers for Use in a High-Pressure Direct Injection (HPDI) Two-Stroke Engine [J].
Ciampolini, Marco ;
Bigalli, Simone ;
Balduzzi, Francesco ;
Bianchini, Alessandro ;
Romani, Luca ;
Ferrara, Giovanni .
ENERGIES, 2020, 13 (11)
[7]  
Council W.E., 2016, WORLD EN SCEN 2016 F
[8]   A study of a turbulent jet ignition system fueled with iso-octane: Pressure trace analysis and combustion visualization [J].
Gentz, Gerald ;
Gholamisheeri, Masumeh ;
Toulson, Elisa .
APPLIED ENERGY, 2017, 189 :385-394
[9]   A Charge Possibility of an Unfueled Prechamber and Its Fluctuating Phenomenon for the Spark Ignited Engine [J].
Gombosuren, Nyamsuren ;
Yoshifumi, Ogami ;
Hiroyuki, Asada .
ENERGIES, 2020, 13 (02)
[10]   A quasi-dimensional model of turbulence and global charge motion for spark ignition engines with fully variable valvetrains [J].
Grasreiner, Sebastian ;
Neumann, Jens ;
Luttermann, Christoph ;
Wensing, Michael ;
Hasse, Christian .
INTERNATIONAL JOURNAL OF ENGINE RESEARCH, 2014, 15 (07) :805-816