Skip to main navigation
Skip to search
Skip to main content
Penn State Home
Help & FAQ
Link opens in a new tab
Search content at Penn State
Home
Researchers
Research output
Research units
Equipment
Grants & Projects
Prizes
Activities
A new rans correction to account for varying viscosity effects
Victor Coppo Leite
,
Elia Merzari
Ken and Mary Alice Lindquist Department of Nuclear Engineering
Institute for Computational and Data Sciences (ICDS)
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'A new rans correction to account for varying viscosity effects'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Reynolds number
100%
Rans
100%
Viscosity Effect
100%
Turbulent Flow
50%
Temperature Gradient
50%
Numerical Simulation
50%
Engineering Application
50%
Viscosity
50%
Thermal Properties
50%
Nuclear Reactor
50%
Turbulence
50%
Heat Transfer Rate
50%
Streamwise
50%
Design Parameters
50%
Reynolds-averaged Navier-Stokes
50%
Combustion Chamber
50%
Direct numerical Simulation
50%
Channel Flow
50%
Scalar Field
50%
Working Fluid
50%
Heat Exchanger
50%
Argonne National Laboratory
50%
Turbulent Structure
50%
Wall Shear
50%
Viscous Property
50%
Application Properties
50%
Nek5000
50%
Wall Friction
50%
Spatially-varying
50%
Flow Conditions
50%
Very High-temperature Heat Transfer
50%
Condition Change
50%
Turbulence Channel
50%
Production Term
50%
Strong Gradients
50%
Engineering
Fluid Viscosity
100%
Reynolds' Number
66%
Design Parameter
33%
Turbulent Flow
33%
Engineering Application
33%
Exchanger
33%
Flow Condition
33%
Nuclear Reactor
33%
Heat Transfer Rate
33%
Streamwise
33%
Reynolds-Averaged Navier-Stokes
33%
Early Work
33%
Channel Flow
33%
Shear Walls
33%
Scalar Field
33%
Computer Simulation
33%
Combustion Chamber
33%
Temperature Gradients
33%
Direct Numerical Simulation
33%
Thermal Gradient
33%
Physics
Reynolds Number
100%
Turbulent Flow
50%
Heat Exchanger
50%
Temperature Gradients
50%
Direct Numerical Simulation
50%
Combustion Chamber
50%
Nuclear Reactor
50%
Working Fluid
50%
Channel Flow
50%
Numerical Simulation
50%