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David Lignell
David Lignell
Professor of Chemical Engineering, Brigham Young University
byu.edu의 이메일 확인됨 - 홈페이지
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The effect of flame structure on soot formation and transport in turbulent nonpremixed flames using direct numerical simulation
DO Lignell, JH Chen, PJ Smith, T Lu, CK Law
Combustion and Flame 151 (1-2), 2-28, 2007
1962007
Three-dimensional direct numerical simulation of soot formation and transport in a temporally evolving nonpremixed ethylene jet flame
DO Lignell, JH Chen, PJ Smith
Combustion and flame 155 (1-2), 316-333, 2008
1412008
Modeling arsenic partitioning in coal-fired power plants
CL Senior, DO Lignell, AF Sarofim, A Mehta
Combustion and Flame 147 (3), 209-221, 2006
1202006
Mesh adaption for efficient multiscale implementation of one-dimensional turbulence
DO Lignell, AR Kerstein, G Sun, EI Monson
Theoretical and Computational Fluid Dynamics 27, 273-295, 2013
1132013
Effects of Damköhler number on flame extinction and reignition in turbulent non-premixed flames using DNS
DO Lignell, JH Chen, HA Schmutz
Combustion and Flame 158 (5), 949-963, 2011
802011
Review of field development optimization of waterflooding, EOR, and well placement focusing on history matching and optimization algorithms
J Udy, B Hansen, S Maddux, D Petersen, S Heilner, K Stevens, D Lignell, ...
Processes 5 (3), 34, 2017
702017
One-dimensional turbulence modeling for cylindrical and spherical flows: model formulation and application
DO Lignell, VB Lansinger, J Medina, M Klein, AR Kerstein, H Schmidt, ...
Theoretical and Computational Fluid Dynamics 32, 495-520, 2018
512018
A DNS evaluation of mixing models for transported PDF modelling of turbulent nonpremixed flames
A Krisman, JCK Tang, ER Hawkes, DO Lignell, JH Chen
Combustion and Flame 161 (8), 2085-2106, 2014
492014
A-priori analysis of conditional moment closure modeling of a temporal ethylene jet flame with soot formation using direct numerical simulation
DO Lignell, JC Hewson, JH Chen
Proceedings of the Combustion Institute 32 (1), 1491-1498, 2009
422009
Modeling soot formation from solid complex fuels
AJ Josephson, RR Linn, DO Lignell
Combustion and Flame 196, 265-283, 2018
352018
One-dimensional-turbulence simulation of flame extinction and reignition in planar ethylene jet flames
DO Lignell, DS Rappleye
Combustion and flame 159 (9), 2930-2943, 2012
352012
Fluxes across double-diffusive interfaces: a one-dimensional-turbulence study
E Gonzalez-Juez, AR Kerstein, DO Lignell
Journal of fluid mechanics 677, 218-254, 2011
292011
Simulation of the evolution of particle size distributions in a vehicle exhaust plume with unconfined dilution by ambient air
P Jiang, DO Lignell, KE Killy, JAS Lighty, AF Sarofim, CJ Montgomery
Journal of the Air & Waste Management Association 55 (4), 437-445, 2005
282005
Reactive Rayleigh–Taylor turbulent mixing: a one-dimensional-turbulence study
ED Gonzalez-Juez, AR Kerstein, DO Lignell
Geophysical & Astrophysical Fluid Dynamics 107 (5), 506-525, 2013
252013
Soot oxidation by OH: theory development, model, and experimental validation
H Ghiassi, D Lignell, JAS Lighty
Energy & Fuels 31 (3), 2236-2245, 2017
232017
Simulation of ethylene wall fires using the spatially-evolving one-dimensional turbulence model
EI Monson, DO Lignell, MA Finney, C Werner, Z Jozefik, AR Kerstein, ...
Fire technology 52, 167-196, 2016
222016
Stochastic modeling of surface scalar-flux fluctuations in turbulent channel flow using one-dimensional turbulence
M Klein, H Schmidt, DO Lignell
International Journal of Heat and Fluid Flow 93, 108889, 2022
212022
Examination of the effect of differential molecular diffusion in DNS of turbulent non-premixed flames
C Han, DO Lignell, ER Hawkes, JH Chen, H Wang
International Journal of Hydrogen Energy 42 (16), 11879-11892, 2017
212017
Modeling soot oxidation and gasification with Bayesian statistics
AJ Josephson, ND Gaffin, ST Smith, TH Fletcher, DO Lignell
Energy & Fuels 31 (10), 11291-11303, 2017
202017
Particle dispersion in homogeneous turbulence using the one-dimensional turbulence model
G Sun, DO Lignell, JC Hewson, CR Gin
Physics of Fluids 26 (10), 2014
162014
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학술자료 1–20