Skip to main navigation
Skip to search
Skip to main content
Experts@Minnesota Home
Home
Profiles
Research units
University Assets
Projects and Grants
Research output
Datasets
Press/Media
Activities
Fellowships, Honors, and Prizes
Impacts
Search by expertise, name or affiliation
Large-eddy simulation of evaporating spray in a coaxial combustor
Sourabh V. Apte
, Krishnan Mahesh
, Parviz Moin
Aerospace Engineering and Mechanics
Research output
:
Contribution to journal
›
Conference article
›
peer-review
67
Scopus citations
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Large-eddy simulation of evaporating spray in a coaxial combustor'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Large Eddy Simulation
100%
Unstructured Grid
100%
Combustor
100%
Evaporating Spray
100%
Gas Phase
60%
Predictive Ability
40%
LES Approach
40%
Droplet Evaporation
40%
Comp
20%
Gas Turbine Combustor
20%
Evaporation Rate
20%
Subgrid-scale Model
20%
Low Mach number
20%
Unstructured Mesh
20%
Dispersed Phase
20%
Dynamic Model
20%
Particle Tracking
20%
Complex Flow
20%
Lagrangian
20%
Droplet Motion
20%
Incompressible Flow
20%
Navier-Stokes Equations
20%
Nozzle Exit
20%
Variable Density
20%
Tracking Schemes
20%
Dispersion Characteristics
20%
Vaporization
20%
Droplet Phase
20%
Density Variation
20%
Particle Phase
20%
Droplet Dynamics
20%
Inlet Conditions
20%
Flow Algorithms
20%
Dynamic Subgrid-scale Model
20%
Isopropyl Alcohol
20%
Droplet Size Distribution
20%
Droplet Dispersion
20%
Size-velocity Correlations
20%
Engineering
Gas-Phase
100%
Combustor
100%
Good Agreement
66%
Predictive Capability
66%
Vaporization
33%
Dispersed Phase
33%
Gas Turbine Combustors
33%
Low Mach Number
33%
Droplet Phase
33%
Particle Phase
33%
Nozzle Exit
33%
Droplet Size Distribution
33%
Incompressible Flow
33%
Evaporation Rate
33%
Dynamic Models
33%
Scale Model
33%
Navier-Stokes Equation
33%