The limits of flame propagation within homogeneous streams of fuel and air
Journal Article
·
· J. Energy Resour. Technol.; (United States)
Information about the limits of flame propagation within streams of homogeneous gaseous fuel-air mixtures at atmospheric pressure is presented for both low velocity streams, in the presence of pilot jet flame ignition, as well as for high velocity streams when ignited by an electric spark of adequate and constant energy. In addition to methane, representing natural gas, other gaseous fuels were considered that included hydrogen and propane. The roles of the presence of varying concentration of the diluent gases, nitrogen and carbon dioxide, with the methane and changes in the intensity of turbulence were also investigated.
- Research Organization:
- Dept. of Mechanical Engineering, The Univ. of Calgary, Calgary, Alberta
- OSTI ID:
- 5211733
- Journal Information:
- J. Energy Resour. Technol.; (United States), Journal Name: J. Energy Resour. Technol.; (United States) Vol. 108:2; ISSN JERTD
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
03 NATURAL GAS
034000* -- Natural Gas-- Combustion
08 HYDROGEN
080800 -- Hydrogen-- Properties & Composition
AIR FLOW
ALKANES
ATMOSPHERIC PRESSURE
CARBON COMPOUNDS
CARBON DIOXIDE
CARBON OXIDES
CHALCOGENIDES
CHEMICAL REACTION KINETICS
COMBUSTION KINETICS
COMBUSTION PROPERTIES
DISPERSIONS
ELECTRIC DISCHARGES
ELECTRIC SPARKS
ELEMENTS
FLAME PROPAGATION
FLOW RATE
FLUID FLOW
FUELS
GAS FLOW
HYDROCARBONS
HYDROGEN FUELS
IGNITION
JETS
KINETICS
METHANE
MIXTURES
NITROGEN
NONMETALS
ORGANIC COMPOUNDS
OXIDES
OXYGEN COMPOUNDS
PROPANE
QUANTITY RATIO
REACTION KINETICS
SYNTHETIC FUELS
TURBULENCE
034000* -- Natural Gas-- Combustion
08 HYDROGEN
080800 -- Hydrogen-- Properties & Composition
AIR FLOW
ALKANES
ATMOSPHERIC PRESSURE
CARBON COMPOUNDS
CARBON DIOXIDE
CARBON OXIDES
CHALCOGENIDES
CHEMICAL REACTION KINETICS
COMBUSTION KINETICS
COMBUSTION PROPERTIES
DISPERSIONS
ELECTRIC DISCHARGES
ELECTRIC SPARKS
ELEMENTS
FLAME PROPAGATION
FLOW RATE
FLUID FLOW
FUELS
GAS FLOW
HYDROCARBONS
HYDROGEN FUELS
IGNITION
JETS
KINETICS
METHANE
MIXTURES
NITROGEN
NONMETALS
ORGANIC COMPOUNDS
OXIDES
OXYGEN COMPOUNDS
PROPANE
QUANTITY RATIO
REACTION KINETICS
SYNTHETIC FUELS
TURBULENCE