Magnesium particles (1-2 mm) are ignited by a hot wire in room-temperature CO2 environment under microgravity and normal gravity conditions. In about 50% of experiments, regardless of the gravity level, a pulsating combustion regime is obtained which may be associated with the relatively low heat release in such oxidizer as CO2 and high heat losses. For stable combustion regime, the burning times measured in microgravity follows a quadratic dependence with the particle size, which is typical for the diffusion-controlled combustion. Good quantitative agreement with previous data obtained for particles of different sizes indicates that combustion mechanisms of magnesium in CO2 are identical in the range of particle sizes 0.05-5 mm
Micron-sized metal powders carried by a nitrogen flow were fed along the axis of a cylindrical hydro...
In this investigation the oxidation behavior of magnesium particles is studied. Non-isothermal measu...
The absence of buoyancy-induced flows in microgravity (mu:g) and the resulting increase in the react...
Magnesium particles (1-2 mm) are ignited by a hot wire in room-temperature CO2 environment under mic...
Ongoing exploration and future mission2001110444 s to Mars have given impetus to research on the use...
The prospects for using Mg as fuel in a CO2-breathing engine in Mars atmosphere without oxygen led t...
An experimental study was performed on the combustion characteristics of a jet diffusion flame of Mg...
The combustion of metals is a field with important practical applications in rocket propellants, hig...
The combustion of iron at high oxygen pressure in normal gravity and microgravity was investigated. ...
Use of high-pressure oxygen systems in space applications requires an understanding of how metals an...
The NASA White Sands Test Facility has completed an extensive test program aimed at evaluating the b...
Although the gas phase combustion of metallic magnesium (Mg) has been extensively studied, the vapor...
The effects of radiation heat transfer in microgravity compared to convection heat transfer in earth...
Recent interest in developing Al-Mg alloys as reactive materials prompted studies of combustion mech...
Physical characteristics of the combustion of metal particle groups have been addressed in this rese...
Micron-sized metal powders carried by a nitrogen flow were fed along the axis of a cylindrical hydro...
In this investigation the oxidation behavior of magnesium particles is studied. Non-isothermal measu...
The absence of buoyancy-induced flows in microgravity (mu:g) and the resulting increase in the react...
Magnesium particles (1-2 mm) are ignited by a hot wire in room-temperature CO2 environment under mic...
Ongoing exploration and future mission2001110444 s to Mars have given impetus to research on the use...
The prospects for using Mg as fuel in a CO2-breathing engine in Mars atmosphere without oxygen led t...
An experimental study was performed on the combustion characteristics of a jet diffusion flame of Mg...
The combustion of metals is a field with important practical applications in rocket propellants, hig...
The combustion of iron at high oxygen pressure in normal gravity and microgravity was investigated. ...
Use of high-pressure oxygen systems in space applications requires an understanding of how metals an...
The NASA White Sands Test Facility has completed an extensive test program aimed at evaluating the b...
Although the gas phase combustion of metallic magnesium (Mg) has been extensively studied, the vapor...
The effects of radiation heat transfer in microgravity compared to convection heat transfer in earth...
Recent interest in developing Al-Mg alloys as reactive materials prompted studies of combustion mech...
Physical characteristics of the combustion of metal particle groups have been addressed in this rese...
Micron-sized metal powders carried by a nitrogen flow were fed along the axis of a cylindrical hydro...
In this investigation the oxidation behavior of magnesium particles is studied. Non-isothermal measu...
The absence of buoyancy-induced flows in microgravity (mu:g) and the resulting increase in the react...