\u3cp\u3eNear-limit low-Lewis-number premixed flame behavior is studied experimentally and numerically for flames of H\u3csub\u3e2\u3c/sub\u3e–CH\u3csub\u3e4\u3c/sub\u3e–air mixtures that are located in a 55 mm diameter tube and below a perforated plate in a downward mixture flow. A combustion regime diagram is experimentally identified in terms of equivalence ratio and ratio of H\u3csub\u3e2\u3c/sub\u3e to CH\u3csub\u3e4\u3c/sub\u3e (variation of fuel Lewis number). Planar flames, cell-like flames, distorted cap-like flames, and arrays of ball-like flames are progressively observed in the experiments as the equivalence ratio is decreased. The experimentally observed ball-like lean limit flames experience chaotic motion, which is accompanie...
A possible scenario of fire inception in microgravity is ignition and burning of solid or liquid mat...
The configurational simplicity of the stationary one-dimensional flames renders them intrinsically a...
Under normal-gravity conditions the flame heat release produces both flow dilatation and buoyancy ef...
Near-limit low-Lewis-number premixed flame behavior is studied experimentally and numerically for fl...
In this research work, we report on the numerical predictions and analysis of stable, stationary and...
The lean limit flames for three different fuel compositions premixed with air, representing three di...
Ultra lean flames propagating in a tube of 12.2 mm internal diameter in mixtures of (40 mol% H2 + 60...
The structure and stability of flame balls and the characteristics of the outwardly propagating sphe...
The Structure of Flame Balls at Low Lewis-Number (SOFBALL) experiment explored the behavior of a new...
The work has encompassed several topics related to the experimental and theoretical study of combust...
At low gravity, when buoyancy effects are small, flame-balls can be generated. These are stationary ...
The stabilization limits of v-flame and conical flames are investigated in normal gravity (+g) and r...
\u3cp\u3eLean limit flames of H\u3csub\u3e2\u3c/sub\u3e-CH\u3csub\u3e4\u3c/sub\u3e-air mixtures stab...
Several topics relating to combustion limits in premixed flames at reduced gravity have been studied...
A possible scenario of fire inception in microgravity is ignition and burning of solid or liquid mat...
A possible scenario of fire inception in microgravity is ignition and burning of solid or liquid mat...
The configurational simplicity of the stationary one-dimensional flames renders them intrinsically a...
Under normal-gravity conditions the flame heat release produces both flow dilatation and buoyancy ef...
Near-limit low-Lewis-number premixed flame behavior is studied experimentally and numerically for fl...
In this research work, we report on the numerical predictions and analysis of stable, stationary and...
The lean limit flames for three different fuel compositions premixed with air, representing three di...
Ultra lean flames propagating in a tube of 12.2 mm internal diameter in mixtures of (40 mol% H2 + 60...
The structure and stability of flame balls and the characteristics of the outwardly propagating sphe...
The Structure of Flame Balls at Low Lewis-Number (SOFBALL) experiment explored the behavior of a new...
The work has encompassed several topics related to the experimental and theoretical study of combust...
At low gravity, when buoyancy effects are small, flame-balls can be generated. These are stationary ...
The stabilization limits of v-flame and conical flames are investigated in normal gravity (+g) and r...
\u3cp\u3eLean limit flames of H\u3csub\u3e2\u3c/sub\u3e-CH\u3csub\u3e4\u3c/sub\u3e-air mixtures stab...
Several topics relating to combustion limits in premixed flames at reduced gravity have been studied...
A possible scenario of fire inception in microgravity is ignition and burning of solid or liquid mat...
A possible scenario of fire inception in microgravity is ignition and burning of solid or liquid mat...
The configurational simplicity of the stationary one-dimensional flames renders them intrinsically a...
Under normal-gravity conditions the flame heat release produces both flow dilatation and buoyancy ef...