Transient Liquid Penetration of Early-Injection Diesel Sprays.
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[1] R. A. White,et al. Smokeless Combustion within a Small-Bore HSDI Diesel Engine Using a Narrow Angle Injector , 2007 .
[2] J. Anders,et al. A Computational Investigation of the Interaction of Pulses in Two-Pulse Jets , 2008 .
[3] Yoshihiro Hotta,et al. Achieving Lower Exhaust Emissions and Better Performance in an HSDI Diesel Engine with Multiple Injection , 2005 .
[4] P. Pacaud,et al. System Approach for Compliance with Full Load Targets on a Wall Guided Diesel Combustion System , 2008 .
[5] Bertrand Gatellier,et al. Development of the High Power NADI™ Concept Using Dual Mode Diesel Combustion to Achieve Zero NOx and Particulate Emissions , 2002 .
[6] S. Alfuso,et al. Analysis of a High Pressure Diesel Spray at High Pressure and Temperature Environment Conditions , 2005 .
[7] Dennis L. Siebers,et al. Liquid-Phase Fuel Penetration in Diesel Sprays , 1998 .
[8] Christoph Espey,et al. The effect of TDC temperature and density on the liquid-phase fuel penetration in a D.I. Diesel engine , 1995 .
[9] Rolf D. Reitz,et al. A Study of the Effects of High EGR, High Equivalence Ratio, and Mixing Time on Emissions Levels in a Heavy-Duty Diesel Engine for PCCI Combustion , 2006 .
[10] Rolf D. Reitz,et al. Premixed diesel combustion analysis in a Heavy-Duty diesel engine , 2003 .
[11] J. Naber,et al. Effects of Gas Density and Vaporization on Penetration and Dispersion of Diesel Sprays , 1996 .
[12] Cherian A. Idicheria,et al. End-of-Injection Over-Mixing and Unburned Hydrocarbon Emissions in Low-Temperature-Combustion Diesel Engines , 2007 .
[13] Charles J. Mueller,et al. Early Direct-Injection, Low-Temperature Combustion of Diesel Fuel in an Optical Engine Utilizing a 15-Hole, Dual-Row, Narrow-Included-Angle Nozzle , 2008 .
[14] Charles J. Mueller,et al. An experimental investigation of in-cylinder processes under dual-injection conditions in a DI diesel engine , 2004 .
[15] Raul Payri,et al. Experimental characterization of internal nozzle flow and diesel spray behavior. Part I: Nonevaporative conditions , 2005 .
[16] M. Musculus,et al. Multiple Simultaneous Optical Diagnostic Imaging of Early-Injection Low-Temperature Combustion in , 2006 .
[17] Akihiko Minato,et al. Investigation of premixed lean diesel combustion with ultra high pressure injection , 2005 .
[18] Dennis N. Assanis,et al. Evaluation of a Narrow Spray Cone Angle, Advanced Injection Timing Strategy to Achieve Partially Premixed Compression Ignition Combustion in a Diesel Engine , 2005 .
[19] Takashi Suzuki,et al. A NEW CONCEPT FOR LOW EMISSION DIESEL COMBUSTION , 1997 .
[20] Gilles Bruneaux,et al. On the origin of Unburned Hydrocarbon Emissions in a Wall Guided, Low NOx Diesel Combustion System , 2007 .
[21] Rolf D. Reitz,et al. Investigation of Mixing and Temperature Effects on HC/CO Emissions for Highly Dilute Low Temperature Combustion in a Light Duty Diesel Engine , 2007 .
[22] R. M. Siewert,et al. Spray Angle and Rail Pressure Study for Low NOx Diesel Combustion , 2007 .
[23] Dennis L. Siebers,et al. Scaling Liquid-Phase Fuel Penetration in Diesel Sprays Based on Mixing-Limited Vaporization , 1999 .
[24] Dennis L. Siebers,et al. Flame Lift-Off on Direct-Injection Diesel Fuel Jets: Oxygen Concentration Effects , 2002 .
[25] Paul C. Miles,et al. The effect of swirl ratio and fuel injection parameters on CO emission and fuel conversion efficiency for high-dilution, low-temperature combustion in an automotive diesel engine. , 2006 .
[26] Hans-Erik Ångström,et al. Advantages of Fuels with High Resistance to Auto-ignition in Late-injection, Low-temperature, Compression Ignition Combustion , 2006 .