Effect of Intake Oxygen Concentration on Particle Size Distribution Measurements from Diesel Low Temperature Combustion
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Ricardo Novella | Jesús Benajes | Francisco Payri | Christopher P. Kolodziej | J. Benajes | R. Novella | F. Payri | Christopher Kolodziej
[1] Paul C. Miles,et al. Detailed Unburned Hydrocarbon Investigations in a Highly-Dilute Diesel Low Temperature Combustion Regime , 2009 .
[2] James E. Parks,et al. Mobile Source Air Toxics (MSATs) from High Efficiency Clean Combustion: Catalytic Exhaust Treatment Effects , 2008 .
[3] John M. E. Storey,et al. Simultaneous Low Engine-Out NOx and Particulate Matter with Highly Diluted Diesel Combustion , 2003 .
[4] Shuji Kimura,et al. New Combustion Concept for Ultra-Clean and High-Efficiency Small DI Diesel Engines , 1999 .
[5] Christopher P. Kolodziej,et al. Comprehensive Characterization of Particulate Emissions from Advanced Diesel Combustion , 2007 .
[6] John M. E. Storey,et al. Implications of Particulate and Precursor Compounds Formed During High-Efficiency Clean Combustion in a Diesel Engine , 2005 .
[7] John M. E. Storey,et al. Exhaust chemistry of low-NOx, low-PM diesel combustion , 2004 .
[8] Niklas Schmidt,et al. Detailed Diesel Exhaust Particulate Characterization and Real-Time DPF Filtration Efficiency Measurements During PM Filling Process , 2007 .
[9] Paul C. Miles,et al. Effect of Intake Pressure on Performance and Emissions in an Automotive Diesel Engine Operating in Low Temperature Combustion Regimes , 2007 .
[10] John H. Johnson,et al. The Effect of Fuel and Engine Design on Diesel Exhaust Particle Size Distributions , 1996 .
[11] L. T. Cowley,et al. Fuel Quality Effects on Particulate Matter Emissions from Light- and Heavy-Duty Diesel Engines , 1994 .
[12] Ricardo Novella,et al. Particle Size Distribution Measurements from Early to Late Injection Timing Low Temperature Combustion in a Heavy Duty Diesel Engine , 2010 .
[13] O. Armas,et al. Diagnosis of DI Diesel combustion from in-cylinder pressure signal by estimation of mean thermodynamic properties of the gas , 1999 .
[14] Y. Goto,et al. Thermal Conditioning of Exhaust Gas: Potential for Stabilizing Diesel Nano-Particles , 2005 .
[15] M. L. Laucks,et al. Aerosol Technology Properties, Behavior, and Measurement of Airborne Particles , 2000 .
[16] Takashi Suzuki,et al. A NEW CONCEPT FOR LOW EMISSION DIESEL COMBUSTION , 1997 .
[17] K. Akihama,et al. Mechanism of the Smokeless Rich Diesel Combustion by Reducing Temperature , 2001 .
[18] Yiqun Huang,et al. Unregulated Exhaust Emissions from Alternate Diesel Combustion Modes , 2006 .
[19] Krishna C. Natti,et al. Particulate Matter Characterization Studies in an HSDI Diesel Engine under Conventional and LTC Regime , 2008 .
[20] M. Musculus,et al. In-Cylinder and Exhaust Soot in Low-Temperature Combustion Using a Wide-Range of EGR in a Heavy-Duty Diesel Engine , 2007 .
[21] Shuji Kimura,et al. Ultra - Clean Combustion Technology Combining a Low - Temperature and Premixed Combustion Concept fo , 2001 .
[22] Wilhelm Bosch,et al. The Fuel Rate Indicator: A New Measuring Instrument For Display of the Characteristics of Individual Injection , 1966 .
[23] Thorsten Raatz,et al. Examination of Particle Size Distribution of Homogeneous and Conventional Diesel Combustion , 2001 .
[24] Kazutoshi Mori,et al. Premixed Compression Ignition (PCI) Combustion for Simultaneous Reduction of NOx and Soot in Diesel Engine , 2004 .
[25] J. Merkisz,et al. Analysis of the Influence of Fuel Sulphur Content on Diesel Engine Particulate Emissions , 2002 .
[26] Yoshinaka Takeda,et al. Emission Characteristics of Premixed Lean Diesel Combustion with Extremely Early Staged Fuel Injection , 1996 .
[27] D. Kittelson,et al. The influence of dilution conditions on diesel exhaust particle size distribution measurements , 1999 .
[28] Octavio Armas,et al. Influence of measurement errors and estimated parameters on combustion diagnosis , 2006 .
[29] Dennis N. Assanis,et al. Speciated Hydrocarbon Emissions from an Automotive Diesel Engine and DOC Utilizing Conventional and PCI Combustion , 2006 .
[30] Takeyuki Kamimoto,et al. High Combustion Temperature for the Reduction of Particulate in Diesel Engines , 1988 .
[31] 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 .
[32] Hajime Ishii,et al. Exhaust Purification of Diesel Engines by Homogeneous Charge with Compression Ignition Part 1: Experimental Investigation of Combustion and Exhaust Emission Behavior Under Pre-Mixed Homogeneous Charge Compression Ignition Method , 1997 .
[33] B. Johansson,et al. Characterization of Partially Premixed Combustion , 2006 .
[34] David B Kittelson,et al. Nuclei-mode particulate emissions and their response to fuel sulfur content and primary dilution during transient operations of old and modern diesel engines. , 2007, Environmental science & technology.
[35] K. Mitchell,et al. Impact of Diesel Fuel Aromatics on Particulate, PAH and Nitro-PAH Emissions , 1994 .
[36] D. Kittelson. Engines and nanoparticles: a review , 1998 .
[37] R. J. B. Way,et al. Methods for Determination of Composition and Thermodynamic Properties of Combustion Products for Internal Combustion Engine Calculations , 1976 .
[38] Kinji Tsujimura,et al. An Experimental Study of Premixed Lean Diesel Combustion , 1999 .
[39] Niklas Schmidt,et al. Detailed Diesel Exhaust Particulate Characterization and DPF Regeneration Behavior Measurements for Two Different Regeneration Systems , 2007 .
[40] J. Dec. A Conceptual Model of DI Diesel Combustion Based on Laser-Sheet Imaging* , 1997 .
[41] T. Johnson. Review of Diesel Emissions and Control , 2010 .