1 - 2 |
A.G Gaydon, FRS (1911-2004) - In memoriam Weinberg F |
3 - 19 |
First-order conditional moment closure modeling of turbulent, nonpremixed methane flames Fairweather M, Woolley RM |
20 - 29 |
Behavior of selenium in the combustion of coal or coke spiked with Se Yan R, Gauthier D, Flamant G, Wang Y |
30 - 39 |
Mid-infrared laser-tomographic imaging of carbon monoxide in laminar flames by difference frequency generation Wondraczek L, Khorsandi A, Willer U, Heide G, Schade W, Frischat GH |
40 - 54 |
Formation of charged aggregates of Al2O3 nanoparticles by combustion of aluminum droplets in air Karasev VV, Onischuk AA, Glotov OG, Baklanov AM, Maryasov AG, Zarko VE, Panfilov VN, Levykin AI, Sabelfeld KK |
55 - 77 |
Fundamentals of high-energy spark ignition with lasers Bradley D, Sheppard CGW, Suardjaja IM, Woolley R |
78 - 96 |
Experimental and numerical evaluation of metallic compounds for suppressing cup-burner flames Linteris GT, Katta VR, Takahashi F |
97 - 107 |
A CFD study of propane/air microflame stability Norton DG, Vlachos DG |
108 - 113 |
Approximate local mathematical descriptions of turbulent Bunsen flames in the flamelet regime Williams FA, Furukawa J |
114 - 135 |
Soot in diesel fuel jets: effects of ambient temperature, ambient density, and injection pressure Pickett LM, Siebers DL |
136 - 154 |
Effects of radiation model on the modeling of a laminar coflow methane/air diffusion fame Liu FS, Guo HS, Smallwood GJ |
155 - 174 |
Experimental investigation of three-dimensional flame-front structure in premixed turbulent combustion - II. Lean hydrogen/air Bunsen flames Chen YC, Bilger RW |
175 - 187 |
Influence of differential diffusion on maximum flame temperature in turbulent nonpremixed hydrogen/air flames Hilbert R, Thevenin D |
188 - 194 |
Marker fields for turbulent premixed combustion Bilger RW |
195 - 198 |
Distribution of the number of primary particles of soot aggregates in a nonpremixed laminar fame Tian K, Liu FS, Thomson KA, Snelling DR, Smallwood GJ, Wang DS |