Experimental study on the effects of ignition location and vent burst pressure on vented hydrogen-air deflagrations in a cubic vessel |
2020 |
Journal Article |
S. Rui, C. Wang, X. Luo, Q. Li, H. Zhang |
explosion venting, overpressure, helmholtz oscillation, Hydrogen safety, Explosion, mixtures, overpressures, duct, cfd |
Experimental study on turbulent expanding flames of lean hydrogen/air mixtures |
2017 |
Journal Article |
J. Goulier, A. Comandini, F. Halter, N. Chaumeix |
turbulent flame, hydrogen flame, expanding flames, Hydrogen safety, burning velocities, elevated pressures, combustion, air, laminar, bomb |
Experiments on combustion regimes for hydrogen/air mixtures in a thin layer geometry |
2019 |
Journal Article |
I. Yasnev, A. Mel'nichenko, V. Gurskii |
Hydrogen, fuel cell, thin layer, extinction, Flame acceleration, detonations, air turbulent flames, stoichiometric ethylene/oxygen, acceleration, instability, Detonation, limits, scale, ddt |
Exploring the potential of compressed natural gas as a viable fuel option to sustainable transport: A bibliography (2001-2015) |
2016 |
Journal Article |
S. Kazemiabnavi, A. Soundararaj, H. Zamani, B. Scharf, P. Thyagarajan, X.L. Zhou |
cng, natural gas, vehicle, transport, cycle emissions, cng |
Explosion mitigation of methane‐air mixture in combined application of inert gas and ABC dry powders in a closed compartment |
2019 |
Journal Article |
T. Ghatauray, J. Ingram, P. Holborn |
ABC dry powder, co2, explosion mitigation, methane-air explosion, process safety, detonation suppression, dust explosions, deflagrations, propagation, prevention, diluents, nitrogen, behavior, particle |
Explosion venting of hydrogen-air mixture in an obstructed rectangular tube |
2022 |
Journal Article |
E. Saikali, A. Sergent, Y. Wang, P. Le Quere, G. Bernard-Michel, C. Tenaud |
Hydrogen safety, explosion venting, Blockage ratio, overpressure, external explosion, turbulent flame propagation, to-detonation transition, gas explosion, obstacles, deflagrations, overpressures, size, congestion, position, Energy & Fuels, Engineering |
Explosion venting of hydrogen-air mixtures from a duct to a vented vessel |
2018 |
Journal Article |
D. Lomot, Z. Karpinski |
explosion venting, overpressure, flame, duct, obstacle, large-scale, gas explosion, equivalence ratio, dust explosions, deflagrations, overpressures, position, volumes, Detonation, combustion |
Explosion venting of rich hydrogen-air mixtures in a small cylindrical vessel with two symmetrical vents |
2017 |
Journal Article |
J. Guo, C. Wang, X . Y. Liu, Y. Chen |
Hydrogen safety, explosion venting, vent area, flame propagation, overpressure, gas-explosions, Pressure, deflagrations, volume, overpressures, enclosures, dynamics, ignition |
External explosions of vented hydrogen-air deflagrations in a cubic vessel |
2021 |
Journal Article |
B. Fumey, S. Stoller, R. Fricker, R. Weber, V. Dorer, U. Vogt |
Hydrogen safety, external explosion, flame, overpressure, vented explosion, burst pressure, gaseous explosions, spherical vessels, ignition position, gas explosion, overpressures, gasdynamics, mixtures |
Extinguishment of hydrogen diffusion flames by ultrafine water mist in a cup burner apparatus - A numerical study |
2015 |
Journal Article |
A. Agll, T. Hamad, Y. Hamad, S. Bapat, J. Sheffield |
Hydrogen safety, water mist, fire suppression, extinguishing mechanism, cup burner, vented cylindrical rig, methane-air, suppression, mitigation, mechanisms, deflagrations, extinction, Explosions, fog |
Extinguishment of hydrogen laminar diffusion flames by water vapor in a cup burner apparatus |
2015 |
Journal Article |
S. Li, J. Long, P. Sui, Z. Hou, R. Chahine, J. Xiao |
Hydrogen safety, diffusion flame, water vapor, nitrogen, flame suppression, oxygen-nitrogen explosions, mist, suppression, extinction, microgravity, mechanisms, model, fire, air |
Fabrication of highly sensitive and selective H(2) gas sensor based on SnO(2) thin film sensitized with microsized Pd islands |
2016 |
Journal Article |
Seyed Hosseini, Brayden Butler |
H(2) gas sensor, Pd islands, SnO(2), Sputtering, Wafer-scale fabrication |
Fast Turbulent Deflagration and DDT of Hydrogen-Air Mixtures in Small Obstructed Channel |
2007 |
Conference Paper |
I. Tolias, S. Giannissi, A. Venetsanos, J. Keenan, V. Shentsov, D. Makarov, S. Coldrick, A. Kotchourko, K. Ren, O. Jedicke, D. Melideo, D. Baraldi, S. Slater, A. Duclos, F. Verbecke, V. Molkov |
ICHS |
Fault tree analysis of proton exchange membrane fuel cell system safety |
2015 |
Journal Article |
S. Collong, R. Kouta |
pemfc system, Safety, fault tree, hydrogen explosion, quantitative safety analysis, Hydrogen safety, customer satisfaction, reliability, risk, quality, design |
Field Trials Testing of Mixed Potential Electrochemical Hydrogen Safety Sensors at Commercial California Hydrogen Filling Stations |
2017 |
Conference Paper |
A. Prabhakar, N. Agrawal, V. Raghavan, S. Das |
|
Finite Element Modeling of Composite Hydrogen Cylinders in Localized Flame Impingements |
2008 |
Journal Article |
T. Skjold, H. Hisken, L. Bernard, L. Mauri, G. Atanga, S. Lakshmipathy, M. Lucas, M. Carcassi, M. Schiavetti, V. Rao, A. Sinha, J. Wen, I. Tolias, S. Giannissi, A. Venetsanos, J. Stewart, O. Hansen, C. Kumar, L. Krumenacker, F. Laviron, R. Jambuti, A. Huser |
|
Fire tests carried out in FCH JU Firecomp project, recommendations and application to safety of gas storage systems |
2019 |
Journal Article |
P. Blanc-Vannet, S. Jallais, B. Fuster, F. Fouillen, D. Halm, T. van Eekelen, S. Welch, P. Breuer, S. Hawksworth |
Safety, fire, composite cylinders, compressed gas, tests, simulation, ICHS |
First responder training: Supporting commercialization of hydrogen and fuel cell technologies |
2017 |
Journal Article |
M. Khan, T. Yasmeen, A. Shakoor, N. Khan, M. Wakeel, B. Chen |
Hydrogen, Hydrogen safety, Fuel cells, first responder, training, emergency response |
Flame acceleration and transition to detonation in ducts |
2008 |
Journal Article |
X. Fan, C. Wang, X. Wang, M. Li, Z. Shen |
ddt, flame, Detonation, shock wave, turbulent burning velocities, transverse-waves, premixed flames, spherical detonation, markstein lengths, air, deflagration, Hydrogen, propagation, initiation |
Flame characteristics of under-expanded, cryogenic hydrogen jet fire |
2022 |
Journal Article |
F. Li, Y. Yuan, X. Yan, R. Malekian, Z. Li |
cryogenic hydrogen, hydrogen jet fire, flame size, thermal radiation fraction, adaptive mesh refinement, high-pressure, nitrogen emissions, diffusion flames, 82 mpa, dispersion, release, simulation, ignition, hazards |
Flame Quenching Limits of Hydrogen Leaks |
2008 |
Journal Article |
Z . Y. Li, Y . Y. Luo |
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Flame spread over n‐butanol fuel at sub‐flashpoint temperature with steps in the gas phase |
2021 |
Journal Article |
Z. Wang, X. Pan, Y. Jiang, Q . Y. Wang, W . Y. Yan, J. Xiao, T. Jordan, J. Jiang |
flame resident time, flame spread, gas-phase step, heat flux, subsurface flow, propagation |
flameFoam: An open source CFD solver for turbulent premixed combustion |
2021 |
Journal Article |
S. Lakshmipathy, T. Skjold, H. Hisken, G. Atanga |
turbulent premixed combustion, openfoam, flame propagation, Hydrogen safety, severe nuclear accidents, hydrogen safety management, detonation transition, validation, deflagration, simulations, mixtures, scale |
Flammability profiles associated with high-pressure hydrogen jets released in close proximity to surfaces |
2017 |
Journal Article |
M. Henriksen, A. Gaathaug, J. Lundberg |
Hydrogen, high-pressure, flacs, Thermal radiation, coanda, flammable extent |
Full-scale tunnel experiments: Blast wave and fireball evolution following hydrogen tank rupture |
2022 |
Journal Article |
H. Saitoh, T. Otsuka, N. Yoshikawa, N. Kanno, S. Takanashi, Y. Oozawa, M. Hirata, M. Takeshita, K. Sakuragi, S. Kurihara, Y. Tsunashima, N. Aoki, K. Tanaka |
Hydrogen safety, tank rupture test, blast wave decay, fireball |