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Turbulence modeling of the flow around horizontal axis wind turbines
Christophe Leclerc
, Christian Masson
,
Idriss Ammara
, Ion Paraschivoiu
École de technologie supérieure
General Education Department
LIDD – Engineering for Sustainable Development Laboratory
École de technologie supérieure
Polytechnique Montréal
Research output
:
Contribution to journal
›
Journal Article
›
peer-review
18
Citations (Scopus)
Overview
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Dive into the research topics of 'Turbulence modeling of the flow around horizontal axis wind turbines'. Together they form a unique fingerprint.
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Keyphrases
Actuator Disk
50%
Additional Term
50%
Arbitrary Array
50%
Atmospheric Turbulence
50%
Blade Element Theory
50%
CVFEM
50%
Flow around
100%
Flow Modeling
100%
Horizontal Axis Wind Turbine
100%
Incident Flow
50%
Incompressible Navier-Stokes Equations
50%
Kinetic Equation
50%
Mathematical Model
50%
Neutral Atmospheric Boundary Layer
50%
Performance Degradation
50%
Performance Prediction
50%
Proposed Methodology
100%
Steady State
50%
Surficial
50%
Tip Vortex
50%
Turbulence
50%
Turbulence Closure Models
50%
Turbulence Modeling
100%
Turbulent Flow Equation
50%
Wake Deficit
50%
Wind Turbine
100%
Engineering
Actuator Disk
50%
Additional Term
50%
Applicability
50%
Atmospheric Turbulence
50%
Axisymmetric
50%
Blade Element Theory
50%
Boundary Layer
50%
Compressed Air Motors
100%
Control Volume Finite Element Method
50%
Flow Equation
50%
Horizontal Axis Wind Turbine
100%
Kinetic Equation
50%
Mathematical Model
50%
Mathematical Modeling
50%
Navier-Stokes Equation
50%
Performance Degradation
50%
Performance Prediction
50%
Turbulence Modeling
100%
Turbulent Flow
50%
Physics
Actuator Disk
33%
Atmospheric Turbulence
33%
Boundary Layer
33%
Compressed Air Motors
100%
Finite Element Analysis
33%
Flow Equation
33%
Kinetic Equation
33%
Mathematical Model
33%
Navier-Stokes Equation
33%
Steady State
33%
Turbulent Flow
33%
Chemical Engineering
Chemical Kinetics Characteristics
100%