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Статьи Авторы

Daun, Kyle J.

Assistant Professor
kjdaun@uwaterloo.ca

Department of Mechanical and Mechatronics Engineering, University of Waterloo
200 University Ave. W, Waterloo, ON, N2L 3G1, Canada

200 University Ave W , Waterloo, ON, CANADA, N2L3G1

Gas dynamics, Radiation heat transfer

2003 PhD (UT Austin), 1999 MASc (Waterloo), 1997 BSc (with distinction) (Manitoba)
2009 JQSRT Reviewer of the Year Award (Radiation), 2010 JQSRT Young Scientist Award
Daun, K. J., Thomson, K. A., and Liu, F., 2007, “Analysis of In-Scattering Effects on Laser Induced Incandescence Measurements through Backwards Monte Carlo,” Journal of Heat Transfer, in press.
Daun, K. J., Stagg, B. J., Liu, F., Smallwood, G. J., and Snelling, D. R., 2007, “Determining Aerosol Particle Size Distributions using Time-Resolved LII,” App. Phys. B, 87, pp. 363-372.
Liu, F., Daun, K. J., Snelling, D. R., and Smallwood, G. J., 2006, “Heat Conduction from a Spherical Nano-Particle: Status of Modeling Heat Conduction in LII,” App. Phy. B, 83, pp. 355-382.
Daun, K. J., Thomson, K. A., Liu, F., and Smallwood, G. J., 2006, “Deconvolution of Axisymmetric Flame Properties using Tikhonov Regularization,” Applied Optics, 45, pp. 4638-4646.
Daun, K. J., França, F., Howell, J. R., Larsen, M., and Leduc, G., 2006, “Comparison of Methods for Inverse Design of Radiant Enclosures,” Journal of Heat Transfer, 128, pp. 269-282.

Klinkova, A.

INVESTIGATING NON-INCANDESCENCE EMISSION DURING LASER INDUCED INCANDESCENCE EXPERIMENTS ON AEROSOLIZED PLASMONIC NANOPARTICLES

Robinson-Enebeli, S.

INVESTIGATING NON-INCANDESCENCE EMISSION DURING LASER INDUCED INCANDESCENCE EXPERIMENTS ON AEROSOLIZED PLASMONIC NANOPARTICLES

Smallwood, Gregory J.

SOOT PARTICLE SIZING BY INVERSE ANALYSIS OF MULTIANGLE ELASTIC LIGHT SCATTERING

Schulz, Christof

LASER-INDUCED INCANDESCENCE MEASUREMENTS OF SILICON AND COPPER NANOPARTICLES: SPECTROSCOPIC MODEL

Waslander, Steven L.

LASER ABSORPTION TOMOGRAPHY RECONSTRUCTION THROUGH THE LEVEL SET METHOD

Hadwin, Paul J.

AN ANALYSIS OF PRIOR INFORMATION IN BAYESIAN TOMOGRAPHIC RECONSTRUCTION

BAYESIAN INFERENCE OF SOOT VOLUME FRACTION THROUGH AUTO-CORRELATED LASER-INDUCED INCANDESCENCE

Grauer, Samuel J.

AN ANALYSIS OF PRIOR INFORMATION IN BAYESIAN TOMOGRAPHIC RECONSTRUCTION

Snelling, David R.

BAYESIAN INFERENCE OF SOOT VOLUME FRACTION THROUGH AUTO-CORRELATED LASER-INDUCED INCANDESCENCE

Sipkens, Timothy A.

BAYESIAN INFERENCE OF SOOT VOLUME FRACTION THROUGH AUTO-CORRELATED LASER-INDUCED INCANDESCENCE

INVESTIGATING NON-INCANDESCENCE EMISSION DURING LASER INDUCED INCANDESCENCE EXPERIMENTS ON AEROSOLIZED PLASMONIC NANOPARTICLES

Time-Resolved Laser-Induced Incandescence for Sizing Aerosolized Silver Nanoparticles

Thomson, Kevin A.

SOOT PARTICLE SIZING BY INVERSE ANALYSIS OF MULTIANGLE ELASTIC LIGHT SCATTERING

Mansmann, Raphael

LASER-INDUCED INCANDESCENCE MEASUREMENTS OF SILICON AND COPPER NANOPARTICLES: SPECTROSCOPIC MODEL

Thompson, K. A.

BAYESIAN INFERENCE OF SOOT VOLUME FRACTION THROUGH AUTO-CORRELATED LASER-INDUCED INCANDESCENCE

Singh, Nigel R.

Time-Resolved Laser-Induced Incandescence for Sizing Aerosolized Silver Nanoparticles

Lin, Kaihsiang

INTERPRETING THE RADIATIVE PROPERTIES OF ADVANCED HIGH STRENGTH STEELS USING THE KIRCHHOFF-HELMHOLTZ MODEL

Link, O.

SOOT PARTICLE SIZING BY INVERSE ANALYSIS OF MULTIANGLE ELASTIC LIGHT SCATTERING

Dreier, Thomas

LASER-INDUCED INCANDESCENCE MEASUREMENTS OF SILICON AND COPPER NANOPARTICLES: SPECTROSCOPIC MODEL

Miguel, Rodrigo B.

Quantifying Flare Combustion Efficiency through MWIR Imaging

Burr, D. W.

SOOT PARTICLE SIZING BY INVERSE ANALYSIS OF MULTIANGLE ELASTIC LIGHT SCATTERING

Howell, John R.

INVERSE DESIGN METHODS FOR RADIATIVE TRANSFER SYSTEMS

Thornock, Jeremy N.

Quantifying Flare Combustion Efficiency through MWIR Imaging

Menser, Jan

LASER-INDUCED INCANDESCENCE MEASUREMENTS OF SILICON AND COPPER NANOPARTICLES: SPECTROSCOPIC MODEL

Twynstra, Matthew G.

LASER ABSORPTION TOMOGRAPHY RECONSTRUCTION THROUGH THE LEVEL SET METHOD

Talebi-Moghaddam, S.

INVESTIGATING NON-INCANDESCENCE EMISSION DURING LASER INDUCED INCANDESCENCE EXPERIMENTS ON AEROSOLIZED PLASMONIC NANOPARTICLES

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