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Combustion in meso-scale vortex combustors II: Numerical simulation
Y. Wang
, V. Yang
,
R. A. Yetter
Mechanical Engineering
Research output
:
Contribution to conference
›
Paper
›
peer-review
1
Scopus citations
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Dive into the research topics of 'Combustion in meso-scale vortex combustors II: Numerical simulation'. Together they form a unique fingerprint.
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Keyphrases
Numerical Simulation
100%
Combustion
100%
Mesoscale Vortex
100%
Recirculation Zone
100%
Isothermal Boundary Conditions
100%
In Meso
100%
Vortex Combustor
100%
Working Pressure
66%
Central Region
66%
Flame Front
66%
Flow Path
33%
Combustor
33%
High Temperature
33%
Density-based
33%
Species Concentration
33%
Viscous Effects
33%
Pressure Rise
33%
Low Speed
33%
Reacting Flow
33%
Flame Height
33%
Flame Stabilization
33%
Numerical Algorithms
33%
Heat Loss
33%
Finite Volume Approach
33%
Conservation Equations
33%
Tangential Directions
33%
Swirling Flow
33%
Speed Zones
33%
Dual-time Stepping
33%
Biot number
33%
Vortex Breakdown
33%
Solid Wall
33%
Energy Concentration
33%
Recirculation Bubble
33%
Reduced Velocity
33%
Engineering
Vortex
100%
Mesoscale
100%
Isothermal
100%
Recirculation Zone
100%
Boundary Condition
100%
Combustion Chamber
100%
Combustor
66%
Central Region
66%
Flame Front
66%
Reactant
33%
Flow Path
33%
Heat Losses
33%
Pressure Increase
33%
Conservation Equation
33%
Reacting Flow
33%
Swirling Flow
33%
Dual Time
33%
Biot Number
33%
Solid Wall
33%
End Surface
33%
Reduced Velocity
33%