References
- Amoia, V., Ficarella, A., Laforgia, D., De Matthaeis, S. and Genco, C. (1997). A theoretical code to simulate the behavior of an electro-injector for diesel engines and parametric analysis. SAE Paper No. 970349
- Bosch, W. (1996). The fuel rate indicator: A new measuring instrument for display of the characteristics of individual injection. SAE Paper No. 660749
- Carlucci, P., Ficarella, A., Giuffrida, A. and Lanzafame, R. (2003). Investigation on realizing fuel rate shaping using a common rail injector. ASME ICES 2003 Spring Technical Conference, Salzburg, Austria, May 11-14, 2003
- Carlucci, P., Ficarella, A., Chiara, F., Giuffrida, A. and Lanzafame, R. (2004). Preliminary studies on the effects of injection rate modulation on the combustion noise of a common rail diesel engine. SAE Paper No. 2004-01-1848
- De Risi, A., Donateo, T. and Laforgia, D. (2002). An application of multi-criteria genetic algorithms to the optimization of a common rail injector. 2002 ASME ICE Spring Technical Conference, Rockford, USA, April 14-17
- Desantes, J. M., Arregle, J. and Rodriguez, P. J. (1999). Computational model for simulation of diesel injection systems. SAE Paper No. 1999-01-0915
- Digesu, P., Ficarella, A., Laforgia, D., Bruni, G. and Ricco, M. (1994). Diesel electro injector: A numerical simulation code. SAE Paper No. 940193
- Erlach, H., Chmela, F., Cartellieri, W. and Herzog, P. (1995). Pressure modulated injection and its effect on combustion and emissions of a HD diesel engine. SAE Paper No. 952059
- Ficarella, A., Laforgia, D. and Landriscina, V. (1999). Evaluation of instability phenomena in a common rail injection system for high speed diesel engines. SAE Paper No. 1999-01-0192
- Henein, N. A., Lai, M. C., Singh, I. P., Zhong, L. and Han, J. (2002). Characteristics of a common rail diesel injection system under pilot and post injection modes. SAE Paper No. 2002-01-0218
- Herzog, P. (1989). The Ideal Rate ofInjection for Swirl Supported Diesel Engines, IMechE Seminar 'Diesel Fuel Injection Systems', Birmingham, UK, October 10-11
- Kampmann, S., Dittus, B., Mattes, P. and Kirner, M. (1996). The influence of hydro grinding at VCO nozzles on the mixture preparation in a DI diesel engine. SAE Paper No. 960867
- Klomp, E. D. (1999). Valve-Covered-Orifice (VCO) fuel injection nozzle delivery analysis. Atomization and Sprays, 9, 541-579
-
Imagine (2000). AMESim
$^\circledR$ Standard Fluid Properties. Technical Bulletin 117. Roanne. France -
Imagine (2002). AMESim
$^\circledR$ Version 4.0. March Roanne. France - Lee, J. H., Cho, S., Lee, S. Y. and Bae, C. (2002). Bouncing of the diesel injector needle at the closing stage. Proc. Institution of Mechanical Engineers, 216, Part D: J Automobile Engineering, 691-700 https://doi.org/10.1177/095440700221600807
- Mahr, B. (2002). Future and potential of diesel injection systems. Proc. THIESEL 2002 Conference on Thermoand Fluid-Dynamic Processes in Diesel Engines, Valencia, Spain, September 10-13
- Nehmer, D. A. and Reitz, R. D. (1994). Measurements of the effects of injection rate and split injections on diesel engine soot and NOx emissions. SAE Paper No. 940668
- Nurick, W. H. (1976). Orifice cavitation and its effect on spray mixing. ASME J Fluids Engineering, 98, 681-687 https://doi.org/10.1115/1.3448452
- Schmidt, D. P. and Corradini, M. L. (1997). Analytic prediction of the exit flow of cavitating orifices. Atomization and Sprays, 7, 603-616 https://doi.org/10.1615/AtomizSpr.v7.i6.30
- Stumpp, G. and Ricco, M. (1996). Common rail-an attractive fuel injection system for passenger car DI diesel engines. SAE Paper No. 960870
- Takamura, A., Ohta, T., Fukushima, S. and Kamimoto, T. (1992). A study on precise measurement of diesel fuel injection rate. SAE Paper No. 920630