Search ICDERS abstract database
List of abstracts accepted for presentation at the 18th ICDERS.
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| ID# | Abstract Title | Contributing Author | Organization | Country | Authors |
| 101 | Investigation into Conditions Enabling the Excitation of the Kinetic Singing Flame | Afanasyev, V.V. | Chuvash State University | Russia | Vladimir V. Afanasyev, Stanislav V. Ilyin, Nikolai I. Kidin, Nikolai A. Tarasov |
| 147 | On Optical Diagnostics for Oxide Particles and Temperature Measurement in Metal Containing Flame | Altman, I.S. | Odessa National University, UKRAINE | Korea | Igor S. Altman |
| 222 | Inverse Methods In Interior Ballistics Processes Study | Arkhipov, V. | Tomsk State University | Russia | Evgeny A. Zverev, Dmitry A. Zimin |
| 185 | Detonation Properties of a Model Condensed-Phase Explosive with a Pressure Sensative Rate Law | Aslam, T.D. | Los Alamos National Laboratory | USA | Tariq D. Aslam |
| 133 | Flame Spread over Thermally Thin Layer System Metallic Substrate - Fuel Film | Babkin, V.S. | Institute of Chemical Kinetics and Combustion SB RAS | Russia | Korzhavin A.A., Bunev V.A., Minaev S.S., Namyatov I.G., Babkin V.S. |
| 2 | The Droplet Ignition in High Pressure Condition with Natural Convection | Baek, S.W. | Korea Advanced Institute of Science and Technology | Korea | Sang Hun Kang, Seung Wook Baek |
| 11 | Formation of Nitric Oxide in a Multi-Staged Air LPG Flame | Baek, S.W. | Korea Advanced Institute of Science and Technolgy | Korea | Han Seok Kim, Seung Wook Baek, Myoung Jong Yu |
| 152 | Structures and Extinctions in Hydrogen Non-Premixed Lifted Turbulent Jet Flame | Bai, B. | Computational Science Division, RIKEN | Japan | Burtsitsig Bai, Yoshiki Shimoshiba, A.Koichi Hayashi, Satoru Ogawa |
| 61 | Stabilization of a Non-Premixed Lifted Flame in an Acoustic Field | Baillot, F. | CORIA UMR 6614 | France | David Demare, Françoise Baillot |
| 36 | Fast and Accurate Flame Computations Using Detailed Chemistry and Transport | Baron, R. | Ecole Centrale Paris | France | Romain Baron, Sebastien Paxion, Dominique Thevenin |
| 56 | Promotion of Secondary Combustion Phenomena by Geometrical Constrains in the Course of Non-Ideal Explosions. | Bartenev, A.M. | Institute of Chemical Physics , RAS | Russia | B.E. Gelfand, A.M. Bartenev, L.H. Josephson, M. Banks |
| 168 | Compressibility Effects of Unreacted Propellant on Thermally Choked Ram Accelerator Performance | Bauer, P.A. | Lab. Combustion et Detonique -CNRS | France | P. Bauer, C. Knowlen, C. Bundy, A.P. Bruckner |
| 178 | Temperature Profiles and their Influence on the ZND Detonation Structure | Bauwens, L. | University of Calgary | Canada | Luc Bauwens, D. Scott Stewart |
| 187 | Simulations of Shock-Induced Mixing and Combustion of an Acetylene Cloud in a Chamber | Bell, J.B. | Lawrence Berkeley National Laboratory | USA | John B. Bell, Marcus S. Day, Vincent E. Beckner, Allen L. Kuhl |
| 136 | Multi-Headed Detonations in Oxygen-Aluminum Mixtures: Two-Dimensional Simulations Using Adaptive Grid Refinement | Benkiewicz, K. | Aoyama Gakuin University | Japan | Krzysztof BENKIEWICZ, A. Koichi HAYASHI |
| 144 | Characterization of Non-premixed Hydrogen-oxygen Flame Heights by Chemical Luminescence Imaging and LDV Techniques | Boukhalfa, M. | INSA Rouen | France | J-L. Beduneau, D. Honore and M. Boukhalfa, J-L. Beduneau, D. Honore, M.A. Boukhalfa |
| p1 | Problems of Predicting Turbulent Burning Rates | Bradley, D. | University of Leeds | UK | Derek Bradley |
| 232 | Fuel/Air Initiator Development for Pulse Detonation Engines | Brophy, C. | Naval Postgraduate School | USA | Chris Brophy, J. Sinibaldi, D.W. Netzer, N. Setxon |
| 17 | Classification of Ignition Processes of Premixed Gases | Brutscher, T. | Engler-Bunte-Institut, Combustion Technology Section | Germany | Tobias Brutscher, Wolfgang Leuckel, Henning Bockhorn |
| 184 | Ram Accelerator Operation at 15 to 20 MPa Fill Pressure | Bundy, C.M. | University of Washington | USA | Christopher Bundy, Carl Knowlen, Adam P. Bruckner |
| 225 | Ethylene Combustion Studied Over a Wide Temperature Range in High Temperature Shock Waves | Cadman, P. | University of Wales | U.K. | P. Cadman, J. Bambrey, G.O. Thomas , S.K. Box |
| 134 | Numerical Modeling of Detonation Properties for Cast TNT | Cao, J. | Institute of Applied Physics and Computational Mathematics | People's Republic of China | Juzhen Cao, Shurong Zhou, Longhe Liang |
| 194 | Higher-Order Conditional Moment Closure Modeling of Turbulent Nonpremixed Combustion | Cha, C.M. | Stanford Univeristy | USA | Chong M. Cha, Heinz Pitsch |
| 215 | The Stability of High Speed Turbulent Deflagrations in Fuel-Air Mixtures in an Obstacle Field | Chao, J.C. | McGill University | Canada | Jenny Chao, John H.S. Lee |
| 74 | Raman Measurements of the Stabilization Process of a Lifted Flame Tuned by Acoustic Excitation | Chao, Y. | National Cheng Kung University | Taiwan R.O.C | Yei-Chin Chao, Chih-Yung Wu, Tony Yuan, Tsarng-Sheng Cheng |
| 200 | Effects of Strain on Transient Ignition Characteristics of Hydrogen-Air Mixtures Impinging on a Platinum Plate | Chao, Y. | National Cheng Kung University | Taiwan R.O.C | Yei-Chin Chao, Hung-Wei Hsu |
| 208 | Structural Characteristics and NOx Formation in an Oscillating Stagnation Flat Flame | Chao, Y. | National Cheng Kung University | Taiwan R.O.C | Yei-Chin Chao, Yau-Wei Huang, Guan-Ban Chen |
| 229 | Radiative Properties of Water Vapor by Optical Study of Hydrogen-air Combustion | Chelin, P. | Laboratoire d'Energétique et d'Economie d'Energie | France | Pascale Chelin, Vincent Pina, Philippe Hervé |
| 39 | Triple Flames Around Two Droplets in Flows with Fuel Vapor | Chen, W. | Foo Yin Institute of Technology | Taiwan R.O.C | Wei-Hsin Chen |
| 15 | The Application of Spontaneous Vibrational Raman Scattering for Temperature Measurements in High Pressure Laminar Flames | Cheng, T. | Chung Hua University | Taiwan R.O.C | T. S. Cheng, T. Yuan, C.-C. Lu, Y.-C. Chao |
| 230 | Turbulent Combustion of Sprays | Chiu, H. | National Cheng Kung University | Taiwan R.O.C | H.H. Chiu |
| 69 | Reattachment of Lifted Flames in Laminar Propane Jets | Chung, S. | School of Mechanical and Aerospace Engineering, Seoul National University | Korea | Jongsoo Lee, Suk Ho Chung |
| 191 | Quenching Distance Measurement for Developing Quenching Meshes for Control of Hydrogen Combustion | Chung, S. | School of Mechanical and Aerospace Engineering, Seoul National University | Korea | Hong Jip Kim, Seung Yeon Yang, Seong Wan Hong, Suk Ho Chung |
| 183 | Critical Tube Measurements at Elevated Initial Mixture Temperatures | Ciccarelli, G. | Queen's University | Canada | Gaby Ciccarelli |
| 179 | Radiant Ignition Models for Nitramine Propellants | Cohen, A. | U.S. Army Research Laboratory | USA | A. Cohen, K. L. McNesby, R. A. Beyer, R. Wainner |
| 166 | Quenching Mechanisms of Gaseous Hydrocarbon-Air Flames in Packed Beds | Continillo, G. | Universita del Sannio | Italy | T.A. Mihalik, J.H.S. Lee, G. Continillo, F.S. Marra |
| 92 | Modeling the Ignition of Sprays | Correa, C.D. | IWR, Univerisity of Heidelberg | Germany | Chrys Correa, Berthold Schramm, Juergen Warnatz |
| 190 | Turbulent Combustion of Spherical Fuel-Rich Hydrogen Pockets | Day, M.S. | Lawrence Berkeley National Laboratory | USA | J.B. Bell, M.S. Day, J.F. Grcar, A.E. Lutz |
| 96 | On the Mechanism of Transition of Self-Sustained Detonation from a Tube to a Half-Space Through an Annular Orifice with Central Obstacle | Desbordes, D. | Laboratoire de combustion et de détonique | France | B. Khasainov, C. Priault, H.-N. Presles, D. Desbordes |
| 157 | Large Eddy Simulation of Lifted Turbulent Jet Diffusion Flames | Domingo, P.M. | CNRS - CORIA - INSA de Rouen | France | Pascale Domingo, Luc Vervisch |
| 114 | Extraction of Basic Flame Properties from Laminar Flame Speed Calculations | Dorofeev, S.B. | RRC - Kurchatov Institute | Russia | A.I. Gavrikov, A.V. Bezmelnitsyn, A.L. Leliakin, S.B. Dorofeev |
| 117 | Slow and Fast Deflagrations in Hydrocarbon-Air Mixtures | Dorofeev, S.B. | RRC - Kurchatov Institute | Russia | M. Kuznetsov, V. Alekseev, Yu. Yankin, S. Dorofeev |
| 135 | DDT in Methane-Air Mixtures | Dorofeev, S.B. | RRC - Kurchatov Institute | Russia | M. Kuznetsov, G. Ciccarelli, S. Dorofeev, V. Alekseev, Yu. Yankin, T.H. Kim |
| 139 | Heat Loss Rates from Hydrogen-Air Turbulent Flames in Tubes | Dorofeev, S.B. | RRC - Kurchatov Institute | Russia | M. Kuznetsov, I. Matsukov, S. Dorofeev |
| 31 | Flow Velocity Field in a Flame Submitted to Acoustic Modulations | Ducruix, S.A. | Laboratoire EM2C | France | Sebastien Ducruix, Daniel Durox, Sebastien Candel |
| 141 | Dynamic Response of a Non-Premixed Flame to Electric Field Forcing | Dunn-Rankin, D. | University of California, Irvine | USA | Ben A. Strayer, Derek Dunn-Rankin |
| 181 | Propagation of Fast Deflagrations and Marginal Detonations in Hydrogen-Air-Additive Mixtures | Eder, A.M. | Lehrstuhl fuer Thermodynamik | Germany | A. Eder, F. Pintgen, F. Mayinger |
| 67 | Turbulent Combustion in Cellular Detonations | Efimenko, A.A. | RRC Kurchatov Institute | Russia | A. Efimenko, S. Dorofeev |
| 52 | To the Theory of Ignition and Detonation of Coal Particle Gas Mixtures | Fedorov, A.V. | Institute of Theoretical and Applied Mechanics RAS | Russia | A.Fedorov, T.A. Khmel', Yu. A. Gosteev |
| 54 | Shock and Detonation Wave Propagation Along Reactive Particle Cloud in Channel | Fedorov, A.V. | Institute of Theoretical and Applied Mechanics SD RAS | Russia | A.V. Fedorov, T.A. Khmel' |
| 202 | Laminar Flame - Wall Interaction Study: Stretch Effect Analysis | Foucher, F. | Universite d'Orleans | France | F. Foucher, S. Burnel, C. Mounaïm-Rouselle, M. Boukhalfa, B. Renou, M. Trinité |
| 142 | Control of Single Droplet Combustion and Emission | FROLOV, S.M. | Semenov Institute of Chemical Physics | Russia | Frolov S.M., Posvyanskii V.S. et al, Esmilaire O., Jablon C. et al |
| 140 | Observation of Flame Structure in Low Damkohler Number Fields | Fuchihata, M. | Kinki University | Japan | Manabu Fuchihata, Tamio Ida, Yukio Mizutani, Masashi Katsuki |
| 106 | Combustible Mixture Injection and Ignition in Downstream of 2-D Detonation | Fujiwara, T. | Nagoya University | Japan | Toshi Fujiwara, Soshi Kawai, Takeshi Miyasaka |
| 108 | Detonation Propagation in Variable Cross Section Channels | Fujiwara, T. | Nagoya University | Japan | Toshi Fujiwara, Ayumi Takasu, Takeshi Miyasaka |
| 50 | Investigation of Flamelets in a Turbulent Premixed Flame with a 4-Element Electrostatic Probe and a 2D LDV | Furukawa, J. | Tokyo Metropolitan College of Technology | Japan | Junichi Furukawa, Toshisuke Hirano, Forman A. Williams |
| 81 | Appropriate Use and Basic Characteristics of Electrostatic Probes | Furukawa, J. | Tokyo Metropolitan College of Technology | Japan | Toshisuke Hirano, Junichi Furukawa |
| 131 | Effects of Boundary Layers on Ignition Behind Reflected Shocks | Gamezo, V.N. | Naval Research Laboratory | USA | Vadim N. Gamezo, Alexei M. Khokhlov, Elaine S. Oran |
| 55 | Blast Waves Focusing In Hydrogen - Air mixtures | Gelfand, B.E. | Institute of Chemical Physics | Russia | B.E. Gelfand, A.M. Bartenev, L.H. Josephson, M. Banks |
| 223 | Modeling and Control of Mixing in a Transverse Jet | Ghoniem, A.F. | Massachusetts Institute of Technology | USA | Youssef M. Marzouk, Ahmed F. Ghoniem |
| 224 | Dynamic Characteristics of Kinetically Controlled Combustion and thier Impact on Thermoacoustic Instability | Ghoniem, A.F. | Massachusetts Institute of Technology | USA | Sungbae Park, Anuradha Annaswamy, Ahmed Ghoniem |
| 199 | A Practical Method for Assessing the Risk of Spontaneous Ignition of Coal and Biomass and its Application to Large Piles | Gibbs, B.M. | University of Leeds | U.K. | Y.S. Nugroho, A.C. McIntosh, B.M. Gibbs |
| 18 | Validation of a New Chemistry Reduction Method for Partially-Premixed Laminar Methane/Air Flames | Gicquel, O. | Ecole Centrale Paris | France | Olivier Gicquel , Dominique Thevenin , Nasser Darabiha |
| 216 | Model Studies of Fuel Injection | Glinka, W. | Warsaw University of Technology, ITC | Poland | Wieslaw Glinka , Zbigniew Gut , Eugeniusz Budny , Janusz Przastek |
| 165 | Thermal Explosion in a Droplet-Gas Cloud with Chemical Reaction of General Order | Goldfarb, I. | Ben-Gurion University of the Negev | Israel | V. Bykov, I. Goldfarb, V. Gol'dshtein, J.B. Greenberg |
| 169 | Delayed Thermal Explosion in Inert Porous Matrix Filled With Evaporating Liquid Fuel | Goldfarb, I. | Ben-Gurion University of the Negev | Israel | I.Goldfarb, V.Gol'dshtein, A.Zinoviev |
| 60 | Use of Thermochemical Conversion in Pulse Detonation Engine | Golub, V.V. | Institute for High Energy Densities | Russia | D.I. Baklanov, V.V. Golub, O.G. Divakov, A.V. Eremin |
| 30 | Laminar-to-Turbulent Flame Transition Initiated by Generation of Instabilities in an Ignition Kernel | Gordon, E.B. | Institute of Energy Problems of Chemical Physics | Russia | Eugene Gordon, Yurii Moskvin, Vladislav Zelenov, Alexander Shteinberg |
| 49 | Extended LMSE mixing model with chemical reaction and injection of unmixed concentrations. | Gorokhovski, M. | CORIA/University of Rouen | France | M. Gorokhovski, V. Sabel'nikov |
| 113 | Burning Velocity Measurements in Aluminum-Air Suspensions Using Stabilized Dust Flames | Goroshin, S.V. | McGill University | Canada | Samuel Goroshin, Massimiliano Kolbe, John Lee |
| 43 | Propagation and Extinction of Unsteady Spherical Spray Flame Fronts | Greenberg, J. | Technion - Israel Institute of Technology | Israel | J.B. Greenberg |
| 68 | Dynamics of Solid Carbon Formation by Turbulent Combustion and Thermal Decomposition of Natural Gas | Gruenberger, T.M. | University of Wales, Cardiff | France | Thomas M.Gruenberger, Mohammad Moghiman, Phil J. Bowen, Nick Syred |
| 93 | A Thermochemical Code (TDS) for Thermodynamic Calculation of Complex Chemical Systems | Gubin, S.A. | Moscow State Engineering Physics Institute | Russia | S.A. Gubin, S.B.Victorov |
| 10 | Modeling of Turbulent Spray Combustion under Cryogenic and Elevated Pressure Conditions | Gutheil, E. | IWR, University of Heidelberg | Germany | D. Schlotz, M. Brunner, E. Gutheil |
| 102 | Pulse Detonation Engine on Gasoline - Air Mixture | Gvozdeva, L.G. | Institute for High Energy Density | Russia | D.I. Baklanov, L.G. Gvozdeva, N.B. Scherbak |
| 95 | Ram-acceleration Enhancement through Projectile and Staging Design | Hamate, Y. | Tohoku University | Japan | Yuichiro Hamate, Akihiro Sasoh, Kazuyoshi Takayama |
| 88 | Hydrocarbon Combustion: The Best Technique for Large Scale Production of Fullerenes | Hammida, M.M. | Facultés Universitaires Notre-Dame de la Paix | Belgium | Mohamed Hammida, Antonio Fonseca, Paul A.Thiry, Janos B.Nagy |
| p2 | Advanced Laser Diagnostics for Reactive Flows | Hanson, R.K. | Stanford University | USA | R.K. Hanson |
| 28 | An Experimental Investigation of Flame Deflagration Over Single and Multiple Solid Obstacles | Hargrave, G.K. | Loughborough University | U.K. | S. Jarvis, G.K. Hargrave, S.S. Ibrahim |
| 158 | Three-Dimensional Modeling of DI Diesel Engine Combustion using a Flamelet Concept | Hasse, C. | ITM, RWTH Aachen | Germany | Christian Hasse, Norbert Peters |
| 161 | DNS of a Statistically Stationary Turbulent Premixed Flame | Hauguel, R. | LMFN - CORIA | France | Raphael Hauguel, Pascale Pomingo, Julien Reveillon, Laurent Guichard-Vervisch |
| 192 | Local Extinction and Reignition in Nonpremixed Turbulent Jet Flames: A View Using the One-Dimensional Turbulence Model | Hewson, J.C. | Sandia National Laboratory | USA | John C. Hewson, Alan R. Kerstein |
| 125 | Combustion of Supersonic Metallic Spheres | Higgins, A.J. | McGill University | Canada | A.J. Higgins, D.L. Frost, C. Knowlen, F. Zhang, S.B. Murray |
| 5 | Theoretical Study of Shock Wave Ignition of Aluminum Particles | Hong, T. | Institute of Applied Physics and Computational Mathematics | People's Republic of China | Tao Hong |
| 130 | Numerical Modeling of Unstable Detonation in Heptane Vapor-Air Mixtures | Hong, T. | Institute of Applied Physics and Computational Mathematics | People's Republic of China | Tao Hong |
| 146 | Microscopic OH and CH Emission Images in Diffusion Flame with Micro Flames | Ida, T. | Kinki University | Japan | Tamio Ida, Manabu Fuchihata, Yukio Mizutani |
| 97 | Electric-Discharge Control of Pre-Detonation Processes | Ilyin, S.V. | Chuvash State University | Russia | Vladimir V. Afanasyev, Stanislav V. Ilyin, Nikolai I. Kidin, Aleksei V. Lapin |
| 207 | Numerical Investigation of Transverse Wave Structures in Two-Dimensional H2-O2-Diluent Detonations | Inaba, K. | Keio University | Japan | Kazuaki Inaba, Akiko Matsuo, Katsumi Tanaka |
| 153 | Detonation Propagation in Hydrogen-Oxygen Mixtures with Concentration Gradients | Ishii, K. | Yokohama National University | Japan | Kazuhiro Ishii, Yuichi Takahashi, Takao Tsuboi |
| 217 | Adiabatic Waves of Gasless Combustion: 3D Simulation | Ivleva, T.P. | Institute of Structural Macrokinetics and Materials Science | Russia | T.P. Ivleva, A.G. Merzhanov |
| 90 | Properties of Propane Flames | Jarosinski, J.J. | Technical University of Lodz | Poland | Jozef Jarosinski, Jerzy Podfilipski, Yikang Pu |
| 167 | Influence of Tube Dimensions on Lean Flammability Limit | Jarosinski, J.J. | Technical University of Lodz | Poland | Jozef Jarosinski, Artur Gutkowski |
| 118 | Investigation of Lateral Effects on Shock Initiation of a Cylindrical Charge of Homogeneous Nitromethane | Jetté, F.X. | McGill University | Canada | F.X. Jetté, A.C. Yoshinaka, M. Romano, A.J. Higgins, J.H.S. Lee, McGill University and F. Zhang, Defence Research Establishment Suffield |
| 76 | Numerical Study of the Effect of Mixture Strength on the Normal Start and Unstart Process in a Superdetonative Mode Ram Accelerator | Jeung, I. | Seoul National University | South Korea | Guee-Won Moon, In-Seuck Jeung, Jeong-Yeol Choi, Friedrich Seiler |
| 42 | Experimental Study of Low Reynolds Number Reacting Flows: Gas-gas Laminar Flat Plate Diffusion Flame in Microgravity | Joulain, P.A. | LCD UPR 9028 au CNRS | France | Pierre Cordeiro, Pierre Joulain, José L.Torero |
| 71 | Simulation of Combustion of Supersonic Hydrogen Jets in a Supersonic Air Flow | Kaltayev, A. | al-Farabi Kazak State University | Kazakhstan | Sh.A. Ershin, U.K.Zhapbaspayev, A.Kaltayev, T. Fujiwara |
| 198 | Critical Condition for Stabilized Chapman-Jouguet Oblique Detonation Waves Around Hypersonic Bodies | Kasahara, J. | Muroran Institute of Technology | Japan | Jiro Kasahara, Takakage Arai, Akiko Matsuo, Nobutaka Akai |
| 163 | Numerical Simulation of Detonation Cells in Hydrogen-Air Mixture with Suspended Aluminum Particles | Khaisinov, B. | Semenov Institute of Chemical Physics | Russia | Boris Khasainov, Bernard Veyssiere, Wilfrid Ingignoli |
| 27 | Effects of Boundary Layers on Shock-flame Interaction and DDT | Khokhlov, A.M. | Naval Research Laboratory | USA | Vadim N. Gamezo, Alexei M. Khokhlov, Elaine S. Oran |
| 94 | Auto-Turbulizating Regimes of Gaseous Spherical Flames | Kidin, N.I. | Institute For Problems In Mechanics | Russia | Ya.A. Gostintsev, A.G.I stratov, N.I. Kidin, V.E. Fortov |
| 78 | On the Bifurcation Structure of Flame Stripes Formed in Strained Diffusion Flames by Diffusional-Thermal Instability | Kim, J. | Korea Institute of Science and Technology | Korea | S. R. Lee, J. S. Kim |
| 70 | Buoyancy Effect on Stable and Oscillating Flames in Coflow Jets for Highly Diluted Propane | Kim, J. | Seoul National University | Korea | Junhong Kim, Moo Kyung Shin, Suk Ho Chung |
| 84 | Numerical Investigation of Combustion and Soot Formation Processes in Turbulent Nonpremixed Flame | Kim, Y. | Hanyang University | Korea | Hoo-Joong Kim |
| 193 | Investigation of the Ram Accelerator Projectile In-tube Stability | Knowlen, C. | University of Washington | USA | Liu Sen, Bai Zhiyong, Adam P. Bruckner, Carl Knowlen |
| 82 | Probe Method of Sampling of Combustion Products of Solid Rocket Propellant at Temperatures and Pressures Typical of Combustion Chamber of Rocket Motor | Korobeinichev, O.P. | Institute of Chemical Kinetics and Combustion, | Russia | O.P. Korobeinichev, A.G. Tereshenko, P.A. Skovorodko, A.A. Paletsky, E.N.Volkov |
| 14 | On Modeling of Shock Waves Interactions with Dusty Gas Layers | Korobeinikov, V.P. | Institute for Computer Aided Design | Russia | R. Klemens, P. Wolanski, P. Kosinski, V. Korobeinikov, I. Semenov, V. Markov |
| 29 | On Theoretical and Experimental Modeling of Detonation Pulse Engine | Korobeinikov, V.P. | Inst. for Copputer Aided Design | Russia | V.Korobeinikov, V.Markov, I.Semenov, S.Wojcicki |
| 99 | Dust-Air Mixtures Spreading in Branched Ducts | Kosinski, P. | Warsaw University of Technology | Poland | Pawel Kosinski, Rudolf Klemens, Piotr Wolanski, Victor Korobeinikov |
| 100 | Numerical Simulation of Dust Layer Dispersion Due to Rarefaction Waves | Kosinski, P. | Warsaw University of Technology | Poland | Pawel Kosinski, Rudolf Klemens |
| 119 | Turbulent Reactive Flow Simulation with Presumed Beta-PDF Combustion Model | Kotchourko, A.S. | Forschungszentrum Karlsruhe IKET | Germany | A.Kotchourko, B. Burgeth, S. Dorofeev, W. Breitung |
| 57 | Influence of Small Additives of Xe on Detonation Threshold of a Mixture of H2, O2 and He | Koulikov, S.V. | Institute of Problems of Chemical Physics RAS | Russia | Serguei Koulikov, Georguei Manelis |
| 188 | Mixing-Controlled Exothermic Fields in Explosions | Kuhl, A.L. | Lawrence Livermore National Laboratory | USA | A. L. Kuhl, R. E. Ferguson |
| 173 | The Dynamic Behaviour of Turbulent, Premixed Swirl Flames | Külsheimer, C. | University of Karlsruhe, Combustion technology section | Germany | Christian Külsheimer, Horst Büchner, Henning Bockhorn |
| 47 | Identification of the Transfer Function in a Model Gas Turbine Combustor: Application to Active Control of Combustion Instabilities | LACAS, F.M. | Laboratoire EM2C du CNRS et de l'ECP | France | Daniel Bernier, Sebastien Ducruix, Francois Lacas, Sebastien Candel et al. |
| 83 | Oscillations in the Flame Speed of Globally Homogeneous Two Phase Mixtures | Lawes, M. | University of Leeds | U.K. | F. Atzler, F.X. Demoulin, M. Lawes, Y. Lee |
| 63 | Correlation between Dynamics and Chemical Kinetics Parameters in Detonation Waves | Lefebvre, M.H. | Polytechnique Institute - Rma | Belgium | L. Desweemer, L. Thill, M.H. Lefebvre, P.J. Van Tiggelen |
| 25 | Initiation of Detonation in Confined Volume by Converging Shock Wave | LEVIN, V.A. | Inst. for Automation & Control Processes | Russia | V.Levin, V.Markov, S.Osinkin, T.Zhuravskaya |
| 73 | MEMS-Based Pulse Detonation Engines for Small-Scale Propulsion Applications | Leyva, I.A. | GE Corporate Research and Development | USA | Edward Furlong, Ivett A. Leyva, Simon Sanderson |
| 209 | A Study of Detonation Transmission for Facilitating Detonation Initiation in Pulse Detonation Engines | Li, C. | Naval Research Lab | USA | Chiping Li, K. Kailasanath |
| 38 | Photographic Study of the Transition Between the Quasi-Detonation and Choking Regimes | Lieberman, D.H. | McGill University | Canada | Daniel H.B. Lieberman, J.H.S. Lee |
| 3 | Analysis of Acoustic Wave Transmission through Turbulent, Premixed Flames | Lieuwen, T.C. | Georgia Institute of Technology | USA | Tim Lieuwen |
| 164 | Time Resolved Flow Characteristics of Confined Turbulent Gaseous Explosions | Lindstedt, P.R. | Imperial College | U.K. | R.P. Lindstedt, H.A. McCann |
| 46 | Simulations of Premixed Turbulent Stagnation Flames with a Flame Speed Closure Model | Lipatnikov, A.N. | Chalmers University of Technology | Sweden | Andrei N. Lipatnikov, Jerzy Chomiak |
| 128 | Combustion in a Transonic Flow with Large Axial and Transverse Pressure Gradient | Liu, F. | University of California, Irvine | USA | Jingshen Cai, Olgu Icoz, Feng Liu, William A. Sirignano |
| 175 | Validation of Selection Parameters for Steady State Species for Automatic Reduction of Chemical Mechanisms | Lovas, T. | Lund University | Sweden | Terese Løvås, Daniel Nilsson, Fabian Mauss |
| 210 | Interesting Flame Propagation Pattern of Gas Flame Interacting With Dust Deposit | Lu, S. | University of Science and Technology of China | People's Republic of China | Shou-Xiang Lu, Li Zhang, Zi-Ru Guo |
| 211 | Numerical Simulation of Multiphase Reactive Boundary Layer Flow | Lu, S. | University of Science and Technology of China | People's Republic of China | Shou-Xiang Lu |
| 213 | Experimental and Theoretical Investigation of Low Temperature PAH and Soot Formation on Hydrocarbon Flames | Mansurov, Z.A. | Al-Farabi Kazakh State National University | Kazakhstan | B.A. Urmashev, T.T. Mashan, B.Ya. Kolesnikov, Z.A. Mansurov |
| 9 | A Singular-Perturbation Analysis of the Burning-Rate Eigenvalue for a Two-Temperature Model of Deflagrations in Confined Porous Energetic Materials | Margolis, S.B. | Sandia National Laboratories | USA | Stephen B. Margolis, Melvin R. Baer |
| 196 | Numerical Simulation of Compressible Reactive Viscous Flow in Complex Geometries | Marra, F.S. | Istituto di Ricerche sulla Combustione | Italy | Marcello Manna, Francesco S. Marra, Andrea Pascarelli |
| 75 | Numerical Study of Detonation Instability for a Two-Step Kinetics Model | Mazaheri, K. | Tarbiat Modarres University | Iran | K. Mazaheri, S.A. Hashemi, J.H.Lee |
| 35 | Non-Adiabatic Strained Premixed Flames -- the Effect of Sudden Transient Cooling by a Pressure Drop | McIntosh, A. | University of Leeds | U.K. | Andy C. McIntosh, John Brindley, Xin-She Yang |
| 89 | Optical Temperature Diagnostics of After-Burning Phenomena in Expanded HE Detonation Products | Medvedev, S.P. | Institute of Chemical Physics, RAS | Russia | B.E. Gelfand, M.F. Gogulya, S.P. Medvedev, A.N. Polenov |
| 109 | Surface Instability and Droplet Pinch-off for Liquid Films and Filaments | Meinköhn, D. | German Aerospace Center DLR | Germany | Dirk Meinköhn |
| 171 | Visualization of Shock Waves at Early Stage of Milligram Charge Explosion | Mizukaki, T. | Tohoku University | Japan | Toshiharu Mizukaki, Harald Kleine, Masahide Katayama, Kazuyoshi Takayama |
| 48 | The Stability of Underexpanded Supersonic Jet Flames Burning H2-CO Mixtures | Moss, J.B. | Cranfield University | U.K. | C.B. Devaud, J.B. Kelman, J.B.Moss, C.D. Stewart |
| 45 | Modelling of Premixed Turbulent Combustion with Variable Equivalence Ratio using a New << partial pdfs >> Approach | Mura, A. | IRPHE UMR 6594 CNRS et CORIA UMR 6614 CNRS | France | Arnaud Mura, Francois Xavier Demoulin, Roland Borghi |
| 85 | Application of Pulsed Flame Jet to Compression Ignition Premixed Charge Engine | Murase, E. | Kyushu University | Japan | Eiichi Murase, Kunihiko Hanada, Takatsugu Katayama |
| 64 | On the Potential of RDX Dust Detonations for Minefield Breaching | Murray, S.B. | Defence Research Establishment Suffield | Canada | S.B. Murray, F. Zhang, I.O. Moen, P.A. Thibault, M.A. Baker, Mining Resource Engineering Limited |
| 127 | The Influence of Driver Power and Receptor Confinement on Pre-Detonators for Pulse Detonation Engines | Murray, S.B. | Defence Research Establishment Suffield | Canada | S.B. Murray, F. Zhang, K.B. Gerrard |
| 62 | Explosion-Induced Combustion of Hydrocarbon Clouds in a Chamber | Neuwald, P. | Ernst-Mach-Institut | Germany | Peter Neuwald, Heinz Reichenbach, Allen L. Kuhl |
| 180 | The Influence of Local Disturbances on the Direct Initiation of Detonations | Ng, H. | McGill University | Canada | Hoi Dick Ng, John H.S. Lee |
| 160 | Modeling of CO Formation in Turbulent Premixed Combustion | Nilsson, P.E. | Lund Institute of Technology | Sweden | Per Nilsson, Xue-Song Bai |
| 162 | Some Aspects on Level-set Modelling of Premixed Turbulent Combustion | Nilsson, P.E. | Lund Institute of Technology | Sweden | Per Nilsson, Xue-Song Bai |
| 87 | Effect of Nitrogen-Oxide Addition on Low-Temperature Powling-Burner Flames | Ohta, Y. | Nagoya Institute of Technology | Japan | Masahiro Furutani, Yasuhiko Ohta, Yasushi Niimi, Masakazu Nose, Shizumo Fujikawa |
| 132 | Diffraction and Re-Initiation of Detonations behind a Backward-facing Step | Ohyagi, S. | Saitama University | Japan | Shigeharu Ohyagi, Tetsuro Obara, Shintaro Hoshi, Pin Cai |
| 8 | Pressure Diagnostics of Combustion Following an Explosion | Oppenheim, A.K. | University of California | USA | A.K. Oppenheim, T-H Sum |
| 221 | Calculation of the Effect of a Tank Partitioning on a Kerosene Explosion | Pascaud, J.M. | Université d'Orléans | France | J.M. Pascaud, P. Gillard, I. Sochet, J. Brossard, A. Moreno and L. Delrieu, DGA/DCE/CEG |
| 21 | Calculation of Deflagrating Flame in a Rectangular Duct with Internal Solid Obstruction | Patel, S.N. | Loughborough University | U.K. | S.S. Ibrahim, S.N.D.H. Patel, G.K. Hargarve |
| 228 | Thermophysical Properties for Dense Multicomponent High Temperature Media | Pavlov, G.A. | Institute of Problems of Chemical Physics | Russia | G.A. Pavlov |
| 66 | Ignition of Jet-A Fuel on Silver Oxide Deposits | Peck, R.E. | Arizona State University | USA | Jeff D. Colwell, Robert E. Peck |
| 143 | Shock-wave and Jet Initiation of Gaseous Explosions | Penyazkov, O.G. | Heat and Mass Transfer Institute | Belarus | O.V. Achasov, O.G. Penyazkov |
| 189 | Characterisation of Confined Turbulent Gas Explosions with Reference to Protection Methodologies | Phylaktou, H.N. | University of Leeds | U.K. | C.L. Gardner, H.N. Phylaktou, G.E. Andrews |
| 172 | The Effect of Nitrates on Deflagration to Detonation Transition | Pinard, P.F. | McGill University | Canada | P. Pinard, A.J. Higgins, J.H.S. Lee, S.B. Murray |
| 195 | Modeling of Extinction and Re-ignition in Non-premixed Turbulent Combustion | Pitsch, H. | Stanford University | USA | Heinz Pitsch, Chong Cha, Sergei Fedotov |
| 124 | Reactive Flow Calculations with Intrinsic Low Dimensional Manifold Corrections for Convection and Diffusion | Powers, J.M. | University of Notre Dame | USA | Sandeep Singh, Samuel Paolucci, Joseph M. Powers |
| 159 | On the Origin of the Double Cellular Structure of Detonation in Gaseous Nitromethane | Presles, H. | Laboratoire de Combustion et de Detonique, CNRS | France | N. Lamoureux, C. Matignon, M.-O. Sturtzer, D. Desbordes, H.-N. Presles |
| 91 | An Experimental Study of Venting Process of Gas-Air Mixture Combustion in a Cylindrical Vessel | Pu, Y. | Chinese Academy of Science | China | Yikang Pu, Jun Hu, Fu Jia, Jozef Jarosinski |
| 126 | Rate Coefficient Measurements of the Reaction H + O2 + M = HO2 + M from 950K to 1200K | Rabinowitz, M.J. | NASA Glenn Research Center | USA | M.J. Rabinowitz, S.M. Hwang, J.A. Cooke, K.J. DeWitt |
| 121 | The Failure Mechanism of Detonations Propagating in Porous Wall Tubes | Radulescu, M.I. | McGill University, Dep. of Mechanical Engineering | Canada | Matei I Radulescu, Marianne Huot, John H.S. Lee |
| 40 | Surface Density Measurements for Freely-Propagating Premixed Turbulent Flames at Various Lewis Numbers. | Renou, B. | LAME-CORIA UMR 6614 CNRS | France | B. Renou, A. Mura, E. Samson, A. Boukhalfa |
| 115 | Partially Premixed Combustion in Turbulent Spray Flames | Reveillon, J. | LMFN CORIA UMR 6614 | France | J. Reveillon, L. Vervisch |
| 186 | Lifted Flames in Axisymmetric Laminar Coflow Jets | Revuelta, A. | Universidad Carlos III de Madrid | Spain | Antonio Revueta, Antonio Luis Sanchez, Amable Linan |
| 86 | NO- and HC- Removal by Non-Thermal Plasmas | Riedel, U. | I W R - University of Heidelberg | Germany | I. Orlandini, U. Riedel |
| 174 | Sensitization of Hydrocarbon-Oxygen Mixtures to DDT via Cool Flame Oxidation | Romano, M.P. | McGill University | Canada | Massimiliano P. Romano, Andrew J. Higgins, John H.S. Lee, Stephen M. Murray |
| p3 | Formation of Nanoparticles in Gaseous Reactive Systems | Roth, P. | Gerhard-Mercator-Universität Duisburg | Germany | Paul Roth |
| 120 | Effects Of Variable Density On Mixing Effeciency In Axisymmetric Turbulent Confined Jets | SARH, B. | LCSR - CNRS | France | N. Belaradh, B. Sarh, J.N. Blanchard, I. Gökalp |
| 16 | Dynamics of Laser-Driven Blast Wave Generated in Space Propulsion Configuration | Sasoh, A. | Shock Wave Research Center, Institute of Fluid Science, Tohoku University | Japan | Akihiro Sasoh |
| 116 | Towards a Generalized Level-set/in-cell-reconstruction Approach for Accelerating Turbulent Premixed Flames | Schmidt, H. | Free University of Berlin | Germany | Heiko Schmidt, Rupert Klein |
| 19 | Generation of Particle Clouds by means of Pressurized Gas and Gas Generators | Schneider, H. | Fraunhofer Institut für Chemische Technologie | Germany | Helmut Schneider, Norbert Eisenreich |
| 148 | Review of Contributions of Fraunhofer ICT to Gas Explosion Research - Illustrated by Film Documents | Schneider, H. | Fraunhofer Institut für Chemische Technologie | Germany | Helmut Schneider, Gesa Langer, Norbert Eisenreich, Wolfgang Liehmann |
| 218 | The Convective-Conductive Mode of the Reaction Zone Propagation: A New Mechanism of Combustion of 'Gasless' Systems | Seplyarskii, B.S. | Institute of Structural Macrokinetics and Materials Science | Russia | Boris S.Seplyarskii |
| 219 | Analysis of the Critical Conditions of Ignition of Gas-suspended Solid Fuel with a Heated Surface | Seplyarskii, B.S. | Institute of Structural Macrokinetics and Materials Science | Russia | Boris S. Seplyarskii, Tatyana P. Ivleva |
| 22 | Evolution of Stable and Pulsating Planar Detonations: Piston and Reflected Shock Initiation | Sharpe, G.J. | University of Birmingham | U.K. | Gary J. Sharpe |
| 41 | Concept of the Limit of Existence of 2-D Steady-State Structure of Fuel Liquid Film under Flame Propagation | Sharypov, O.V. | Institute of Thermophysics SB RAS | Russia | Oleg V. Sharypov, Konstantin A. Medvedko |
| 137 | Direct Observations of Reaction Zone Structure in Propagating Detonations | Shepherd, J.E. | California Institute of Technology | USA | F. Pintgen, C.A. Eckett, J.M. Austin, J.E. Shepherd |
| 138 | A Planar Detonation Initiator | Shepherd, J.E. | California Insitute of Technology | USA | Scott I. Jackson, Joseph E. Shepherd |
| 226 | Combustion and Explosion of Condensed Reactive Systems as Result of Thermodynamics Stability Loss. New Ideology and Aspects | Shlensky, O.F. | Mendeleev University of Chemical Technology | Russia | O. Shlensky |
| 123 | Propagation Laws and Direct Initiation for Quasi-steady Curved Detonations with Chain-Branching Kinetics | Short, M. | University of Illinois | USA | Mark Short, John B. Bdzil |
| 12 | On Accuracy of the Turbulent Burning Velocity Measured in a Cruciform Burner using Ion-Probe Sensors | Shy, S.S. | National Central University | Taiwan R.O.C | W.J. Lin, R.C. Su, S.S. Shy |
| 122 | Three-dimensional Ignition and Flame Propagation Above Liquid-Fuel Pools: Computational Analysis | Sirignano, W.A. | University of California, Irvine | USA | J. Cai, F. Liu, W.A. Sirignano |
| 154 | The Influence of Detonation Cell Size and Regularity on the Propagation of Gaseous Detonations in Granular Materials | Slungaard, T. | Norwegian University of Science and Technology | Norway | Torbjorn Slungaard, Tom Engebretsen, Otto K. Sonju |
| 26 | Peculiarities of Deflagration to Detonation Transition in Gases | Smirnov, N.N. | Moscow M.V.Lomonosov State University | Russia | N.N.Smirnov, V.F.Nikitin |
| 151 | Computational and Experimental Study of Ammonium Perchlorate Counterflow Diffusion Flames | Smooke, M.D. | Yale University | USA | Mitchell D. Smooke, Richard A. Yetter, Timothy P. Parr, Donna M. Hanson-Parr |
| 204 | Chemical Reactions and Energy Exchange under Thermally Non-Equilibrium Conditions at High Temperatures in N2O-CO System | Starikovski, A.Y. | Moscow Institute of Physics and Technology | Russia | Andrei Yu. Starikovskii |
| 203 | Spark Ignition in the Pre-Heated CH4-Air Mixtures Behind Reflected Shock Waves | Starikovskii, A.Y. | Moscow Institute of Physics and Technology | Russia | Alexaner B. Britan, Gregory Pilch, Eran Sher, A. Yu Starikovskii |
| 205 | Hydrogen oxidation and Ignition Development by Nanosecond High-Current Discharge | Starikovskii, A.Y. | Moscow Institute of Physics and Technology | Russia | Andrei Yu. Starikovskii |
| 201 | Measurement of Surface Pressure with Pressure Sensitive Paint in a Detonation Tube | Sukawa, Y. | Aoyama Gakuin University | Japan | Yukihiro Sukawa, Koichi Hayashi |
| 58 | Gas and coal dust combustion with staged air and pulsation effect | Szecowka, L. | Technical University of Czestochowa | Poland | Lech Szecowka, Henryk Radomiak |
| 155 | Effect of Transient Gas Dynamic Processes on Impulse of Pulse Detonation Engines | Tanguay, V. | McGill University | Canada | V. Tanguay, C.B. Kiyanda, A.J. Higgins, J.H.S. Lee |
| 80 | Mixture of Initial Reagents with Hot Detonation Products as the Subject of Studies in the Shock Tube | Tarzhanov, V. | RFNC-VNIITF | Russia | V.I.Tarzhanov |
| 104 | Detonation of Propane-Air Mixture in the Perforated Tube and Release of Detonation Products | Tarzhanov, V. | RFNC-VNIITF | Russia | V.I. Tarzhanov, V.I. Sdobnov, A.D. Zinchenko, V.A. Ogarkov |
| 105 | Thermodynamics of Propane-Air Composition Detonation in the Mixture with Hot Detonation Products | Tarzhanov, V. | RFNC-VNIITF | Russia | V.I.Tarzhanov, V.V.Vlasov, V.A.Ogarkov |
| 32 | Modeling of Natural Gas Reburning Process with Pressure Pulsations | Teodorczyk, A. | Warsaw University of Technology | Poland | L.Szecówka, R.Jarnicki, A.Teodorczyk |
| 33 | Quenching of Gas Detonation in Tube by Injection of Inert Gas | Teodorczyk, A. | Warsaw University of Technology | Poland | A.Dabkowski, A.Kozak, A.Teodorczyk |
| 13 | Interaction between Shock and Detonation Waves | Terao, K. | Yokohama National University | Japan | Kunio Terao, Takayuki Yoshida, Kazuaki Kishi, Kazuhiro Ishii |
| 51 | On The Controlled Generation and Detailed Observation of the Onset of Detonation | Thomas, G.O. | University of Wales | U.K. | Richard Bambrey, Geraint Thomas |
| 129 | On Critical Conditions For Detonation Initiation By Shock Reflection From Rectangular Obstacles | Thomas, G.O. | University of Wales | U.K. | G.O. Thomas, S.M. Ward, Rh. Ll. Williams |
| 79 | A Numerical Study of Hydrogen/Air Detonation Using a Pressure Dependent Stanford Model: Formation and Burning of Unreacted Gas Pocket | Tsuboi, N. | Fujii Lab., High Speed Aerodynamics | Japan | Nobuyuki Tsuboi, Hiroshi Shimizu, A.Koichi Hayashi, Yoichiro Matsumoto |
| 98 | Modelling of Premixed Counterflow Flames Using the Flamelet-Generated Manifold Method | Van Oijen, J.A. | Eindhoven University of Technology | The Netherlands | J.A. van Oijen, L.P.H. de Goey |
| 37 | Two-step Chemical-Kinetic Descriptions for Detonation Studies | Varatharajan, B. | University of California, San Diego | USA | B. Varatharajan, F. A. Williams |
| 1 | Self-Organisation of Multifront Structure in Extending Detonation Wave | Vasil'ev, A.A. | Lavrentyev Institute of Hydrodynamics SB RAS | Russia | Anatoly A.Vasil'ev, Anatoly V.Trotsyuk |
| 4 | Hydrocarbon Gas Hydrates and Their Detonation Hazard | Vasil'ev, A.A. | Lavrentyev Institute of Hydrodynamics SB RAS | Russia | A.A.Vasil'ev, A.I.Valishev, V.A.Vasil'ev, L.V.Panfilova |
| 44 | Heat Release Effects in Lifted Laminar Jet Diffusion Flames | Vervisch, L.J. | INSA de Rouen | France | Joan Boulanger, Sandip Ghosal, Julien Reveillon, Luc Vervisch |
| 110 | Propagation of a Flame from the Closed End of a Smooth Horizontal Tube of Variable Length | Veyssiere, B. | Laboratoire de Combustion et de Detonique-CNRS | France | Steven Kerampran, Daniel Desbordes, Bernard Veyssiere |
| 112 | Effect of a Suspension of Magnesium particles on the Detonation Characteristics of Methane-Oxygen-Nitrogen Mixtures at Elevated Initial Pressures | VEYSSIERE, B. | Laboratoire de Combustion et de Detonique-CNRS | France | Bernard Veyssiere, Olivier Bozier, Boris Khasainov |
| 107 | Condition for Explosion by Impact of a Planar, Self-sustained Detonation | Vidal, P. | CNRS | France | Pierre Vidal, Boris Khasainov |
| 103 | Spontaneous Detonation in the Mixture of Initial Reagents with Hot Detonation Products | Vildanov, V.G. | RFNC-VNIITF | Russia | V.I. Tarzhanov, I.V. Telichko, V.G. Vildanov, V.I. Sdobnov |
| 227 | Formation and Thermal Decomposition of Solid Carbon Particles during Pyrolysis of Carbon Suboxide behind Shock Waves | Vlasov, P.A. | Semenov Institute of Chemical Physics | Russia | G.L. Agafonov, M. Nullmeier, P.A. Vlasov, J. Warnatz |
| 6 | Numerical Studies of Shock Reflection and Ignition | Wang, B. | Forschungszentrum Jülich | Germany | Boliang Wang, Werner Rehm |
| 156 | On the Location of the Chapman-Jouguet Surface in Gaseous Detonations Close to the Limit of Propagation | Weber, M. | Shock Wave Laboratory, Univ. of Technology Aachen | Germany | Michael Weber, Herbert Olivier, Hans Grönig, Jörg Biegling |
| 182 | On the Exit Boundary Condition for One-dimensional Calculations of Pulsed Detonation Engine Performance | Wilson, J. | QSS Group, Inc. | USA | Jack Wilson, Daniel E. Paxson |
| 233 | Ignition of Liquid and Dust Fuel Layer by Hydrogen-Oxygen Detonation | Wolanski, P. | Warsaw University of Technology | Poland | Piotr Wolanski, Arkadiusz Kobiera |
| 111 | Unstable Explosion Flames and Acoustic Oscillations | Woolley, R. | University of Leeds | U.K. | D. Bradley, C.G.W. Sheppard, R. Woolley |
| 170 | Experimental Studies on Flame Stabilization and NOx/Noise Reduction in Lifted Hydrogen-Jet Flames | Yamazaki, Y. | Aoyama Gakuin University | Japan | Yasuo Yamazaki, Michio Haba, A.Koichi Hayashi, Robert K.Cheng |
| 150 | Scale Effect on Recirculation Zone of the Bluff-body Burner with Concentric Jets | Yang, J. | National Tsing Hua University | Taiwan R.O.C | Jing-Tang Yang, Yu-Ping Kang |
| 197 | Combustion Mechanism of the Multi-way Impinging Burners | Yang, J. | National Tsing Hua University | Taiwan R.O.C | Jing-Tang Yang, Han-Chang Cheng, Fu-Ane Chen, Shiung-Fu Chen |
| 34 | Steep Pressure Interactions With a Methane-Air Flame: The Inclusion of Multi-step Chemistry | Yang, X. | University of Leeds | U.K. | Xin-She Yang, Andy C. McIntosh, John Brindley |
| 145 | Visualization of Burning Flow Around the Projectile in Ram Accelerator by Coaxial Simultaneous Shadow/Direct Photograph | Yatsufusa, T. | Hiroshima University | Japan | Tomoaki Yatsufusa, Shiro Taki |
| 149 | Burning Intensity of Laminar Premixed Flame with Continuous Changing Stretch Rate along the Flame Surface | Yokomori, T. | Graduate School of Keio University | Japan | Takeshi Yokomori, Masahiko Mizomoto |
| 53 | Extinction Mechanism of Swirling Lean Methane-Air Flames | Yorimori, K. | Nagoya University | Japan | Kazufumi Yorimori, Makihito Nishioka, Tadao Takeno, K.N.C. Bray |
| 20 | JP-10 Vapour Detonations at Elevated Pressures and Temperatures | Zhang, F. | Defence Research Establishment Suffield | Canada | Fan Zhang, Stephen B Murray, K. Gerrard |
| 176 | Modelling Of Turbulent Jet Flames | Zhang, Y. | UMIST | U.K. | T.J. Craft, Y. Zhang, W.T. Chan |
| 177 | Turbulence and Velocity Induced by Combusting Impinging Jets | Zhang, Y. | UMIST | U.K. | G.M. Abu-Orf, Y. Zhang, B.E. Launder, K.N.C. Bray |
| 23 | Cellular Structure of Spray Detonation | Zhdan, S.A. | Lavrentyev Institute of Hydrodynamics | Russia | S.A. Zhdan, E.S. Prokhorov |