Thursday July 31
08:30 | Plenary Lecture: Aamir Farooq, KAUST, Saudi Arabia New perspectives on multi-mode and multi-scale shockwave dynamics C140 | ||||
09:30 | COFFEE BREAK 20 min | ||||
Room | C309 | C307 | C140 | C308 | C240 |
Set R1 | Battery kinetics and safety | Flame behavior and instabilities | Non-equilibrium effets in detonations 1 | Detonation structure and inhibition | Detonation Engine 9 / Oblique |
|---|---|---|---|---|---|
09:50 | Understanding the Thermochemical Reactions of Lithium and Carbonate Electrolytes at Elevated Temperatures (20) J. Oh*, M. Tang | Flame Behavior in Expanding Flow (22) T. Tsuruda*, T. Daitoku, H. Osaka | Experimental assessment of thermal non-equilibrium (NEQ) in H2-air detonations with emission spectroscopy (73) H. Bilal, K. Chatelain*, D. Lacoste | 3D Numerical Simulation on Shock Front Structure of Hydrogen/Air Spinning Detonation (202) H. Okuda*, N. Tsuboi, A.K. Hayashi | Numerical Investigation of Assisted Initiation of Oblique Detonation Waves by Energy Deposition (93) Z. Jiang, Z. Zhang*, Z. Chen, J. Hao, C.-Y. Wen |
10:15 | CO Time-History Measurements and Kinetic Modeling of Trimethyl Phosphate Pyrolysis (94) K. Kanayama*, C. Grégoire, K. Maruta, E. Petersen, O. Mathieu, H. Nakamura | Double shock-flame interactions and the induced flame instabilities (25) X. Zhang*, T. Shen, H. Xiao | Vibrational Nonequilibrium Modeling Framework for High-Speed Combustion Applications (84) S. Voelkel*, M. Short | Direct Detonation Initiation in Dimethyl Ether-Oxygen-Nitrogen-Carbon Dioxide Mixtures: Effect of Low-Temperature Chemistry and Ozone Addition (55) Z. Huang, R. Mevel* | Boundary Layer Separation Effects on Viscous Oblique Detonations over Compression Corners (96) X. Shao, Z. Zhang*, J. Hao, C.-Y. Wen |
10:40 | Characterizing the Safety of Commercial Sodium-ion Cells and Modules (98) D. R. R. Kannan*, V. Premnath, J. Jeevarajan, C. Lopez | Buoyancy limit and ascending velocity of lean syngas flames (148) Y. Ballossier*, A.Desclaux, M. Bouton, A. Bentaib, A. Comandini, N. Chaumeix | Idealized Detonation Modeling with Vibrational Nonequilibrium (85) S. Voelkel*, M. Short | Inhibition of Hydrogen-air Detonations using Organophosphorus Compounds (247) A. Dahake, R. K. Singh, A. S. Karthik, A. V. Singh* | Structure of Conical Oblique Detonation Waves at an Angle of Attack (210) S.S. Abisleiman*, R. Bielawski, V. Raman |
11:05 | Understanding Ignition Mechanisms and Improving Temperature Boundary Condition for Lithium-Ion Battery Vent Gas Simulations (119) N. A. Senarathna*; M.-A. Bérubé, P. Versailles, E. Robert, B. Savard | Dynamics of acoustically-induced boundary-layer flashbacks in a dump combustor (170) J.-M. Klein*, A. Genot, A. Vincent-Randonnier, A. Mura | A Temperature Non-Equilibrium Reactive Model for Detonation Hydrodynamics (206) W. Morin*, J. G. McDonald, M.I. Radulescu | Enhancing the Lean Detonability Limit of Hydrogen-Oxygen Detonations using Ozone (220) R. Singh, A. Dahake, A. Karthik, A. Singh* | Influence of Inert Gas Boundaries on Detonation Propagation (181) Y. Wahba*, X. Mi, C. Kiyanda, A. Higgins |
11:30 | Preventing battery thermal runaway via electro-thermal characterization using impedance spectrum (167) P. B. Singh*, J. J. Yoh | A molecular view of shock interactions and reflections with implications in gas-phase detonations (222) A. M. Jayaraman*, E. Genter, H. Wang | Formation conditions of double cellular detonation in C2H4/O2/O3/N2 mixtures with two-stage reactions (23) J. Sun*, Z. Chen | ||
11:55 | LUNCH 1 h 30 | ||||
Set R2 | Carbon free fuels - ammonia 2 | Flame ignition | Non-equilibrium effets in detonations 2 | Detonation (re)initiation 2 | Ramjets and Scamjets 1 |
13:25 | Investigation of NH3/CH4 Flame Structure and Dynamics in a Swirl Turbulent Non-Premixed Burner (40) A. Morel*, T. Boushaki | Hot Gas Kernel Expansion Shape Caused by Contact-Break Discharges on Cadmium and Zinc Cathodes in a Hydrogen-Air Mixture (66) D. Bratek*, C. Uber, E. Khan, B. Barbu, R. Methling | Non-Equilibrium Translational Effects and the Limits of Weak Detonations in Shock-to-Detonation Transition (160) R. Murugesan*, M. I. Radulescu | Mechanisms of Detonation Re-initiation in a Narrow Channel at a Back-Facing Step (185) Y. Poroshyna*, J. Loiseau, S. Lau-Chapdelaine, G. Ciccarelli | Numerical simulation of two-phase combustion in a scramjet (59) F. Kissel, G. Ribert*, P. Domingo |
13:50 | Experimental investigation of oxygen concentration effect on spherical turbulent flame propagation limits of ammonia–oxygen–nitrogen premixed flames (143) Y. Xia, N. Hashimoto, O. Fujita* | Effects of Fuel Nozzle Geometry on the Flammability Limits of Low-Swirl Biogas Diffusion Flames (155) S.C. Fabbro, M. Birouk* | Shocks in n-dodecane/nitrogen mixtures: a molecular dynamics study (225) E. Genter*, A. Jayaraman, A. Nobili, H. Wang | Controlling Parameters for Detonation Re-initiation After Interaction with Cylinders in Hydrogen and Hydrocarbon Mixtures (262) H. Yang*, M. I. Radulescu | Study of a Rotating Detonation Torch for Scramjet Engines (95) M. Kakuda*, K. Norimatsu, S. Suzuki, S. Nishiura, N. Katsumura, N. Itouyama, K. Matsuoka, J. Kasahara, T. Kudo, A. Hayakawa, K. Kobayashi, S. Tomioka |
14:15 | Reduced chemistry and differential diffusion effects in simulations of ammonia-hydrogen fuel blend (75) G. Grassi, P. Domingo, L. Vervisch* | Study on Effects of Low-Temperature Preheating on Ignition and Combustion of Weakly Caking Coal (166) Z. Li*, S. Zhu, J. Hui | Numerical Modeling of Vibrational Nonequilibrium Detonations in Hydrogen-Oxygen Mixtures (240) S. M. Hussain, A. S. Karthik, A. Dahake, R. K. Singh, A. V. Singh* | Detonation transmission experiments at large scale (203) J. Melguizo-Gavilanes*, A. Pekalski | Effects of μPDE-Driven Excitation on a Model Supersonic Combustor (254) K.-H. Lee*, B.-K. Sung, S.W. Choi, G.-U. Mo, J.-Y. Choi |
14:40 | Experimental and Modeling Study of NH3/C2H4 Combustion (127) O. Mathieu*, M. Abulail, C. M. Grégoire, A. Mousse-Rayaleh, A. Palomino, N. Chaumeix, H. Hashemi, P. Glarborg, E. L. Petersen | Investigation of Cook-Off Response Characteristics of GAP Propellant under Structural Constraints (50) S. Guo, Y. Wu*, J. Wang, F. Jin, X. Wang | The Translational Non-Equilibrium Stucture of Inert Shock Waves and Triple Points with Account for Heat Fluxes (255) E. Rice*, J. McDonald | Sensitivity of Detonation Re-initiation at a Back-Facing step to Transverse Waves (184) Y. Poroshyna*, G. Ciccarelli, S. Lau-Chapdelaine | Trajectory Analysis of Liquid Fuel Injected Normally to High-Enthalpy Supersonic Crossflows (257) J. Sprunger*, N. Dreyer, K. Ahmed |
15:05 | Main-Track Poster Session and Coffee (Main Hall) | ||||
Set R3 | Application of deep/machine learning to reactive systems | Flame front structure and instabilities 2 | DDT 3 | Dust flames and explosions | Imploding / jet detonation |
15:25 | Detonation cell sizes in hydrogen-methane blends (171) G. Bakalis*, Y. Lyu, B. Zhang, H.D Ng | The Influence of Wall Conductivity on Flame Thermoacoustics in Rectangular Channels (120) Z. Negrette*, S. Jackson, M. Short | Choked flame and its transition to detonation in an obstructed channel (107) J. Fan*, M. Li, H. Xiao | Investigating turbulence and turbulent flame propagation in dust clouds (237) C. Proust*, M. Battikh, J. Daubech | Numerical Simulations of Imploding Detonations (32) L. Shi*, C.-Y. Wen |
15:50 | Development of an Automated Computer Vision Approach for Detonation Cellular Structure Analysis (179) D. Jalontzki*, S. Charash, A. Zussman, S. Pendurkar, G. Sharon, Y. Kozak | Geometric Characteristics of Turbulent Premixed Methane-Air Flame in a Constant Volume Vessel and the Impact on Flame-Wall Interaction (124) Y. Wang*, S. Jiang, M. Tanahashi | Experimental Comparison of Slow and Fast Gas Heating Processes to Reduce the Deflagration-to-Detonation Run-up Distance in Hydrogen-Air Detonations (135) M. Alicherif*, D.A. Lacoste | Examining the effect of reactivity parameters S_T, R and χ on dust explosion venting (173) C.R. Bauwens*, S. Dorofeev | Behavior of Imploding Detonation Waves in A Cylindrical Chamber (162) K. Ishii*, H. Ueo |
16:15 | Application of an Ensemble Kalman Filter With Gaussian Anamorphosis to a 1D Detonation Flow (268) J. Hansen*, D. Brouzet, M. Ihme | Low Lewis Number Flames Near a Porous-Plug burner: Stability, Dynamics and Limits of Existence (125) D. Fernandez-Galisteo*, C. Jiménez, V. N. Kurdyumouv | Detonation Initiation by Reflection of a Fast-Flame at an Obstacle (208) M. Moran*, G. Ciccarelli | Modeling and Analysis of the Planar Jet-Stabilized Detonation Waves (36) C. Colby*, A. Poludnenko | |
17:00-17:20 | BANQUET: buses departure | ||||