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Simulation-Based Design Study Modeling a Wind Turbine. Chris Gloss, Andrew Lincoln, Matthew Mustard, John Semmens , & Shereef Shehab. Introduction. Scope. Goals Develop a fully functional model of a 1.5 MW wind turbine based on industry standards
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Simulation-Based Design Study Modeling a Wind Turbine Chris Gloss, Andrew Lincoln, Matthew Mustard, John Semmens, & ShereefShehab
Scope • Goals • Develop a fully functional model of a 1.5 MW wind turbine based on industry standards • Utilize available wind data for Atlanta’s Airport • Determine the feasibility of installing a wind turbine in Atlanta • Design Variables • Rotor Radius • Tower Height • To develop a model of a wind turbine that will provide its expected utility using the Dymola and Model Center software. Wind Turbine Modeling
Influence Diagram Wind Turbine Modeling
Blades • NACA 4412 Airfoil • Triangular planform. • Assumed to be made of fiberglass and hollow. • Moment of inertia of the blade about the base was calculated. Wind Turbine Modeling
Dymola Model: Overview Wind Turbine Modeling
Implementation of a PID Controller Wind Turbine Modeling
Role of Uncertainty • The central composite experiment showed which uncertain variables have the greatest effect. Wind Turbine Modeling
Monte Carlo Analysis Wind Turbine Modeling
Dymola Model: Cost Wind Turbine Modeling
NPV Model Wind Turbine Modeling
@Risk – Monte Carlo within Excel AEP = 3,950,000 kW-hr Left: Cost = $1,880,000 Right: Cost = $1,770,000 Wind Turbine Modeling
Determination of r • NPV Maximum = $3,856,616.88 • NPV Minimum = ($1,173,934.14) At what dollar amount are we indifferent between the NPV maximum and minimum? • Chosen value = $200,000 • Using a Matlab script the risk aversion coefficient is 4.2438x10-7 Wind Turbine Modeling
Full Factorial Exploration Wind Turbine Modeling
Deterministic Optimization Wind Turbine Modeling
Optimization with Uncertainty Wind Turbine Modeling
Thank You Does any one have any questions? Wind Turbine Modeling