The effect of pressure boundary rupture rate on hydrogen spontaneous ignition has been numerically investigated. A mixture-averaged multi-component approach was used for accurate calculation of molecular transport. Spontaneous ignition and combustion chemistry were accounted for using a 21-step kinetic scheme. A 5th-order WENO scheme coupled with ultra fine meshes was employed to reduce false numerical diffusion. The study has demonstrated that the rupturing process of the initial pressure boundary has important influence on the spontaneous ignition of pressurized hydrogen release. When the pressure boundary rupture rate is below a certain threshold value, the predictions showed that there would be no spontaneous ignition. As the rupture ra...
Sudden releases of pressurised hydrogen may spontaneously ignite by the so-called “diffusion ignitio...
Direct Numerical Simulations (DNS) are performed to investigate the process of spontaneous ignition ...
This paper describes hydrogen gas self-ignition as a result of the release from high-pressure chambe...
Numerical simulations have been carried out for spontaneous ignition in the sudden release of pressu...
Numerical investigations have been conducted on the effect of the internal geometry of a local contr...
The issue of spontaneous ignition of highly pressurized hydrogen release is of important safety conc...
Spontaneous ignition of a pressurized hydrogen release has important implications in the risk assess...
Spontaneous ignition of compressed hydrogen release through a length of tube with different internal...
A wide consensus of climate research indicates that anthropogenic greenhouse gas emissions affect th...
A wide consensus of climate research indicates that anthropogenic greenhouse gas emissions affect th...
End gas auto-ignition and transition of flame front are considered as the main causes of severe pres...
End gas auto-ignition and transition of flame front are considered as the main causes of severe pres...
End gas auto-ignition and transition of flame front are considered as the main causes of severe pres...
The spontaneous ignition delay time of hydrogen-air mixtures has been studied experimentally and num...
Direct Numerical Simulations (DNS) are performed to investigate the process of spontaneous ignition ...
Sudden releases of pressurised hydrogen may spontaneously ignite by the so-called “diffusion ignitio...
Direct Numerical Simulations (DNS) are performed to investigate the process of spontaneous ignition ...
This paper describes hydrogen gas self-ignition as a result of the release from high-pressure chambe...
Numerical simulations have been carried out for spontaneous ignition in the sudden release of pressu...
Numerical investigations have been conducted on the effect of the internal geometry of a local contr...
The issue of spontaneous ignition of highly pressurized hydrogen release is of important safety conc...
Spontaneous ignition of a pressurized hydrogen release has important implications in the risk assess...
Spontaneous ignition of compressed hydrogen release through a length of tube with different internal...
A wide consensus of climate research indicates that anthropogenic greenhouse gas emissions affect th...
A wide consensus of climate research indicates that anthropogenic greenhouse gas emissions affect th...
End gas auto-ignition and transition of flame front are considered as the main causes of severe pres...
End gas auto-ignition and transition of flame front are considered as the main causes of severe pres...
End gas auto-ignition and transition of flame front are considered as the main causes of severe pres...
The spontaneous ignition delay time of hydrogen-air mixtures has been studied experimentally and num...
Direct Numerical Simulations (DNS) are performed to investigate the process of spontaneous ignition ...
Sudden releases of pressurised hydrogen may spontaneously ignite by the so-called “diffusion ignitio...
Direct Numerical Simulations (DNS) are performed to investigate the process of spontaneous ignition ...
This paper describes hydrogen gas self-ignition as a result of the release from high-pressure chambe...