Publications
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, “Effects of primary soot particle size distribution on the temperature of soot particles heated by a nanosecond pulsed laser in an atmospheric laminar diffusion flame”, International Journal of Heat and Mass Transfer, vol. 49, p. 777-788, 2006.
, “Heat conduction from a spherical nano-particle: status of modeling heat conduction in laser-induced incandescence”, Applied Physics B, vol. 83, no. 3, p. 355 - 382, 2006.
, “Heat conduction from a spherical nano-particle: status of modeling heat conduction in laser-induced incandescence”, Applied Physics B: Lasers and Optics, vol. 83, no. 3, p. 355 - 382, 2006.
, “Influence of polydisperse distributions of both primary particle and aggregate size on soot temperature in low-fluence LII”, Applied Physics B: Lasers and Optics, vol. 83, no. 3, p. 383 - 395, 2006.
, “Laser induced incandescence measurements of soot volume fraction and effective particle size in a laminar co-annular non-premixed methane/air flame at pressures between 0.5–4.0 MPa”, Applied Physics B: Lasers and Optics, vol. 83, no. 3, p. 469 - 475, 2006.
, “Laser-induced incandescence: recent trends and current questions”, Applied Physics B: Lasers and Optics, vol. 83, no. 3, p. 333 - 354, 2006.
, “A calibration-independent laser-induced incandescence technique for soot measurement by detecting absolute light intensity”, Applied Optics, vol. 44, p. 6773-6785, 2005.
, “Effects of primary particle diameter and aggregate size distribution on the temperature of soot particles heated by pulsed lasers”, Journal of Quantitative Spectroscopy and Radiative Transfer, vol. 93, p. 301-312, 2005.
, “Soot concentration and temperature measurements in co-annular, nonpremixed CH4/air laminar flames at pressures up to 4 MPa”, Combustion and Flame, vol. 140, p. 222-232, 2005.
, “Determination of the soot absorption function and thermal accommodation coefficient using low-fluence LII in a laminar coflow ethylene diffusion flame”, Combustion and Flame, vol. 136, p. 180-190, 2004.
, “Distribution of the number of primary particles of soot aggregates in a nonpremixed laminar flame”, Combustion and Flame, vol. 138, p. 195-198, 2004.
, “Concurrent quantitative laser-induced incandescence and SMPS measurements of EGR effects on particulate emissions form a TDI diesel engine”, SAE Technical Paper Series 2002-01-2715, 2002.
, “Determination of the Soot Absorption Function and Accommodation Coefficient Using Low-Fluence LII”, in Twenty-Ninth Symposium (International) on Combustion, Sapporo, Japan, 2002, p. WIP 3-1354.
, “Effect of EGR on Heavy-Duty Diesel Engine Emissions Characterized with Laser-Induced Incandescence”, in ASME-ICED 2002 Fall Technical Conference, New Orleans, 2002.
, “Effects of gas and soot radiation on soot formation in a coflow laminar ethylene diffusion flame”, Journal of Quantitative Spectroscopy and Radiative Transfer, vol. 73, p. 409-421, 2002.
, “Investigation of LII for Online Measurement of Nanoparticle Surface Area in a Carbon Black Reactor”, in Twenty-Ninth Symposium (International) on Combustion, Sapporo, Japan, 2002, p. WIP 3-1411.
, “Spectrally Resolved Measurement of Flame Radiation to Determine Soot Temperature and Concentration”, AIAA Journal, vol. 40, p. 1789-1795, 2002.
, “A Calibration-Independent Technique of Measuring Soot by Laser-Induced Incandescence Using Absolute Light Intensity”, in The Second Joint Meeting of the US Sections of the Combustion Institute, Oakland, California, 2001.
, “Clouds over soot evaporation: Errors in modeling laser-induced incandescence of soot”, Journal of Heat Transfer, vol. 123, p. 814-818, 2001.
, “Clouds over Soot Evaporation: Errors in Modeling Laser-Induced Incandescence of Soot”, Journal of Heat Transfer, vol. 123, p. 814-818, 2001.
, “Laser-Induced Incandescence Measurements of Particulate Matter Emissions in the Exhaust of a Diesel Engine”, in Proceedings of the Fifth International Symposium on Diagnostics and Modeling of Combustion in Internal Combustion Engines (COMODIA), Nagoya, 2001.
