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MCL825 : DESIGN OF WIND POWER FARMS: Sem II-2018-19
MCL825:Syllabus and references
Lecture Notes
MCL825:Design of Wind Farms : Introduction
Creation & Characterization of Winds
Fluid Dynamics of Wind
Analysis of Potential Winds
Analysis of Geostrophic & Real Winds
Analysis of Real (Viscous Turbulent) Winds
Statistical Analysis of (Viscous Turbulent)Winds
Evolution of Wind Turbines
Euler Theory for Wind Turbines
Linear Momentum Analysis for A Wind Power Farm
Betz Analysis for A Wind Turbine
Anatomy of A WT to Meet Betz Analysis - 1
Anatomy of A WT to Meet Betz Analysis - 2
Fluid Dynamic Principles to Generate Axial Induction
Airfoils to Generate Axial Induction
Potential flow Analysis to Model Lifting Devices-1
Potential flow Analysis to Model Lifting Devices-2
Conformal Transformation to Model Lifting Devices
Design of Airfoil as A Wind Turbine Blade
Analysis of Low Speed Viscous Flow Past an Airfoil as A Wind Turbine Blade
Boundary Layer Theory for Wind Turbine Blades
Analysis & Control of B L Structure for WT (Low Re) Blades
Eulerization of Betz theory: Wind Turbines
Dual Induction theory for Wind Turbines
Fluid Dynamics Based Design of A Wind Turbine
Double Dual Induction Factors for A Wind Turbine
Analysis of vertical Axis Wind Turbines
Double-multiple Stream Tube Model for Darrieus Wind Turbines
Unsteady Aerodynamics of VAWT Blades
Aerodynamic Study of Continuously Pitching Airfoils
Quantification of Enhanced Effects due to Dynamic Stall
Methodology to Estimate Dynamic Characteristics of An Airfoil
Vortical Description of Dynamics Stall Effects in A VAWT
Micrositing for Wind Turbines
Analysis of Wind Turbines Wakes
Jenson Model for Design of Windfarms
Wind Farm Aerodynamics
Development of Accurate Analytical Model for Wind Turbine Wakefields
Design of Vertical Axis Wind Turbines
Design of Efficient Windfarms
Windfarm Control Systems
Ecological Study of Windfarms
Development & Operation of Windfarms
Reading Material
Statistical Analysis of Wind