8681 - 8681 |
Preface to the special issue on the 7th International Conference on Hydrogen Safety (ICHS 2017) Carcassi MN, Tchouvelev AV, Jordan T, Hawksworth SJ |
8682 - 8691 |
Sample scale testing method to prevent collapse of plastic liners in composite pressure vessels Blanc-Vannet P, Papin P, Weber M, Renault P, Pepin J, Laine E, Tantchou G, Castagnet S, Grandidier JC |
8692 - 8698 |
Adapted tube cleaning practices to reduce particulate contamination at hydrogen fueling stations Terlip D, Hartmann K, Martin J, Rivkin C |
8699 - 8710 |
Consequence models for vented hydrogen deflagrations: CFD vs engineering models Lakshmipathy S, Skjold T, Hisken H, Atanga G |
8711 - 8726 |
Performance evaluation of empirical models for vented lean hydrogen explosions Sinha A, Rao VCM, Wen JX |
8727 - 8742 |
Experiments on combustion regimes for hydrogen/air mixtures in a thin layer geometry Kuznetsov M, Grune J |
8743 - 8750 |
Numerical and experimental investigation of H-2-air and H-2-O-2 detonation parameters in a 9 m long tube, introduction of a new detonation model Malik K, Zbikowski M, Bak D, Lesiak P, Teodorczyk A |
8751 - 8758 |
Effect of plastic deformation at room temperature on hydrogen diffusion of S30408 Qu WM, Gu CH, Zheng JY, Zhao YZ, Hua ZL |
8759 - 8766 |
The residual strength of automotive hydrogen cylinders after exposure to flames Tamura Y, Yamazaki K, Maeda K, Sato K |
8767 - 8779 |
Numerical modelling of vented lean hydrogen deflagations in an ISO container Vendra CMR, Wen JX |
8780 - 8790 |
A dual zone thermodynamic model for refueling hydrogen vehicles Xiao JS, Wang X, Zhou X, Benard P, Chahine R |
8791 - 8798 |
Quantitative risk analysis of life safety and financial loss for road accident of fuel cell vehicle Sun K, Li ZY |
8799 - 8806 |
PIV-measurements of reactant flow in hydrogen-air explosions Vaagsaether K, Gaathaug AV, Bjerketvedt D |
8807 - 8818 |
Validation of a 3D multiphase-multicomponent CFD model for accidental liquid and gaseous hydrogen releases Jakel C, Kelm S, Verfondern K, Allelein HJ |
8819 - 8832 |
Vented hydrogen deflagrations in containers: Effect of congestion for homogeneous and inhomogeneous mixtures Skjold T, Hisken H, Lakshmipathy S, Atanga G, Bernard L, van Wingerden M, Olsen KL, Holme MN, Turoy NM, Mykleby M, van Wingerden K |
8833 - 8841 |
Monte-Carlo-analysis of minimum load cycle requirements for composite cylinders for hydrogen Mair GW, Becker B, Wang B, Gesell S |
8842 - 8855 |
Numerical modelling of release of subsonic and sonic hydrogen jets Sathiah P, Dixon CM |
8856 - 8873 |
Highly resolved large eddy simulations of a binary mixture flow in a cavity with two vents: Influence of the computational domain Saikali E, Bernard-Michel G, Sergent A, Tenaud C, Salem R |
8874 - 8885 |
Thermal radiation from cryogenic hydrogen jet fires Cirrone DMC, Makarov D, Molkov V |
8886 - 8892 |
Simulation of thermal hazards from hydrogen under-expanded jet fire Cirrone DMC, Makarov D, Molkov V |
8893 - 8903 |
Structural response for vented hydrogen deflagrations: Coupling CFD and FE tools Atanga G, Lakshmipathy S, Skjold T, Hisken H, Hanssen AG |
8904 - 8913 |
A comparison study into low leak rate buoyant gas dispersion in a small fuel cell enclosure using plain and louvre vent passive ventilation schemes Ghatauray TS, Ingram JM, Holborn PG |
8914 - 8926 |
Vented explosion of hydrogen/air mixture: An intercomparison benchmark exercise Vyazmina E, Jallais S, Krumenacker L, Tripathi A, Mahon A, Commanay J, Kudriakov S, Studer E, Vuillez T, Rosset F |
8927 - 8934 |
Pressure effects of an ignited release from onboard storage in a garage with a single vent Brennan S, Hussein HG, Makarou D, Shentsov V, Molkov V |
8935 - 8953 |
Comparisons of experimental measurements and large eddy simulations for a helium release in a two vents enclosure Bernard-Michel G, Saikali E, Sergent A, Tenaud C |
8954 - 8959 |
Comparisons of hazard distances and accident durations between hydrogen vehicles and CNG vehicles Li ZY, Luo YY |
8960 - 8970 |
Mixing and warming of cryogenic hydrogen releases Hecht ES, Panda PP |
8971 - 8980 |
Prevention of hydrogen accumulation inside the vacuum vessel pressure suppression system of the ITER facility by means of passive auto-catalytic recombiners Steffen PM, Reinecke EA, Kelm S, Bentaib A, Chaumeix N, Allelein HJ |
8981 - 8987 |
Research on hydrogen dispersion by Raman measurement Segawa Y, Inoue M, Nakamoto A, Umehara S |
8988 - 8996 |
Determination of underexpanded hydrogen jet flame length with a complex nozzle geometry Henriksen M, Gaathaug AV, Lundberg J |
8997 - 9008 |
Blind-prediction: Estimating the consequences of vented hydrogen deflagrations for homogeneous mixtures in 20-foot ISO containers Skjold T, Hisken H, Lakshmipathy S, Atanga G, Carcassi M, Schiavetti M, Stewart JR, Newton A, Hoyes JR, Tolias IC, Venetsanos AG, Hansen OR, Geng J, Huser A, Helland S, Jambut R, Ren K, Kotchourko A, Jordan T, Daubech J, Lecocq G, Hanssen AG, Kumar C, Krumenacker L, Jallais S, Miller D, Bauwens CR |
9009 - 9017 |
Influence of initial pressure on hydrogen/air flame acceleration during severe accident in NPP Scarpa R, Studer E, Kudriakov S, Cariteau B, Chaumeix N |
9018 - 9030 |
A comparative CFD assessment study of cryogenic hydrogen and LNG dispersion Giannissi SG, Venetsanos AG |
9031 - 9040 |
Hydrogen dispersion in a closed environment De Stefano M, Rocourt X, Sochet I, Daudey N |
9041 - 9049 |
Hydrogen combustion experiments in a vertical semi-confined channel Friedrich A, Grune J, Sempert K, Kuznetsov M, Jordan T |
9050 - 9062 |
Best practice guidelines in numerical simulations and CFD benchmarking for hydrogen safety applications Tolias IC, Giannissi SG, Venetsanos AG, Keenan J, Shentsov V, Makarov D, Coldrick S, Kotchourko A, Ren K, Jedicke O, Melideo D, Baraldi D, Slater S, Duclos A, Verbecke F, Molkov V |
9063 - 9070 |
Small scale experiments and Fe model validation of structural response during hydrogen vented deflagrations Pini T, Hanssen AG, Schiavetti M, Carcassi M |
9071 - 9079 |
Non-steady characteristics of dispersion and ignitability for high-pressurized hydrogen jet discharged from a pinhole Okabayashi K, Tagashira K, Kawazoe K, Takeno K, Asahara M, Hayashi AK, Komori M |
9080 - 9088 |
The effect of venting process on the progress of a vented deflagration Schiavetti M, Pini T, Carcassi M |
9089 - 9099 |
Analysis of transient supersonic hydrogen release, dispersion and combustion Breitung W, Halmer G, Kuznetsou M, Xiao JJ |
9100 - 9109 |
Fire tests carried out in FCH JU Firecomp project, recommendations and application to safety of gas storage systems Blanc-Vannet P, Jallais S, Fuster B, Fouillen F, Halm D, van Eekelen T, Welch S, Breuer P, Hawksworth S |
9110 - 9119 |
Security risk analysis of a hydrogen fueling station with an on-site hydrogen production system involving methylcyclohexane Nakayama J, Kasai N, Shibutani T, Miyake A |