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Mixed convective burning of a horizontal flat plate
M. S. Raju
,
C. K. Lawt
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peer-review
3
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Keyphrases
Velocity Profile
100%
Approximate Solution
100%
Convective Burning
100%
Mixed Convection
100%
Horizontal Flat Plate
100%
Rigorous Solution
100%
Mixed Convective
100%
Boundary Layer
50%
Combustion
50%
Mass Burning Rate
50%
Temperature Gradient
50%
Flame Front
50%
Complete Solution
50%
Variable Velocity
50%
Surface Temperature
50%
Buoyancy Force
50%
Flame Location
50%
Laminar Boundary Layer Flow
50%
Standoff Distance
50%
Separation Point
50%
Local Similarity
50%
Surface Shear
50%
Pyrolyzate
50%
Chemically Reacting
50%
Shear Gradients
50%
Opposing Flow
50%
Engineering
Convective
100%
Flat Plate
100%
Velocity Profile
100%
Approximate Solution
100%
Mixed Convection
100%
Boundary Layer
50%
Laminar Boundary Layer
50%
Good Agreement
50%
Layer Flow
50%
Burning Rate
50%
Flame Front
50%
Complete Solution
50%
Similarities
50%
Buoyancy Force
50%
Thermal Gradient
50%
Temperature Gradient
50%
Earth and Planetary Sciences
Velocity Distribution
100%
Flat Plate
100%
Boundary Layer
50%
Burning Rate
50%
Laminar Boundary Layer
50%
Boundary Layer Flow
50%
Chemical Engineering
Mixed Convection
100%
Thermal Gradient
50%
Physics
Mixed Convection
100%