1 - 3 |
Selected presentations from the Seventeenth International Colloquium on the Dynamics of Explosions and Reactive Systems -Preface Sirignano WA, Williams FA |
4 - 4 |
Henri Guenoche - Eulogy Lee JHS, Sedes C |
5 - 14 |
Pathological detonations in H-2-Cl-2 Dionne JP, Duquette R, Yoshinaka A, Lee JHS |
15 - 33 |
Flame propagation in a tube: The legacy of Henri Guenoche Bradley D |
35 - 51 |
Generation of flame front turbulence Hirano T |
53 - 70 |
The hydrodynamic structure of a methane-air tulip flame Kaltayev AK, Riedel UR, Warnatz J |
71 - 91 |
Study of the mechanisms of flame acceleration in a tube of constant cross section Kerampran S, Desbordes D, Veyssiere B |
93 - 114 |
A study of the interaction between a jet flame and a lateral wall Chao YC, Wu CY |
115 - 134 |
The effects of an impingement surface and quenching on the structure of laminar premixed flames Sullivan N, Branch MC, Strobel M, Park J, Ulsh M, Leys B |
135 - 166 |
Nonlinear intrinsic instability of solid propellant combustion including gas-phase thermal inertia Kumar KRA, Lakshmisha KN |
167 - 182 |
Mitigation of explosions in a vented vessel connected to a duct Ponizy B, Veyssiere B |
183 - 194 |
Visualization of dust explosion under microgravity conditions Jarosinski J, Podfilipski J, Pu YK |
195 - 210 |
Modeling of laminar mono- and bidisperse liquid oxygen/hydrogen spray flames in the counterflow configuration Schlotz D, Gutheil E |
211 - 247 |
Full PDF modelling of reactive sprays via an evaporation-progress variable Rumberg O, Rogg B |
249 - 272 |
Assumed PDF modeling of turbulent spray combustion Demoulin FX, Borghi R |
273 - 297 |
Direct numerical simulation and modeling of kinematic restoration, dissipation and gas expansion effects of premixed flames in homogeneous turbulence Wenzel H, Peters N |
299 - 320 |
Modeling a turbulent reactive flow with variable equivalence ratio: Application to a flame stabilized by a two-dimensional sudden expansion Bigot P, Champion M, Garreton-Bruguieres D |
321 - 340 |
Investigation of a turbulent flame speed closure approach for premixed flame calculations Dinkelacker F, Holzler S |
341 - 363 |
A numerical study of transient ignition in a counterflow nonpremixed methane-air flame using adaptive time integration Im HG, Raja LL, Kee RJ, Petzold LR |
365 - 388 |
Numerical study of opposed-jet H-2/air diffusion flame - vortex interactions Lee JC, Frouzakis CE, Boulouchos K |
389 - 406 |
Unsteady flamelet modeling of soot formation in turbulent diffusion flames Pitsch H, Riesmeier E, Peters N |
407 - 438 |
Numerical simulation of soot formation in a turbulent flame with a Monte-Carlo PDF approach and detailed chemistry Zamuner B, Dupoirieux F |
439 - 460 |
Kinetic modeling of carbon suboxide thermal decomposition and formation of soot-like particles behind shock waves Sojka J, Warnatz J, Vlasov PA, Zaslonko IS |
461 - 484 |
Feasibility of controlling NOx emissions from a jet flame by acoustic excitation Chao YC, Huang YW, Wu DC |
485 - 494 |
Experimental determination of pdfs of OH radicals in IC engines using calibrated laser-induced fluorescence as a basis for modelling the end-phase of engine combustion Pixner P, Schiessl R, Dreizler A, Maas U |