Design Loads for Horizontal Axis Wind Turbines

This chapter contains sections titled: National and international standards Basis for design loads Turbulence and wakes Extreme loads Fatigue loading Stationary blade loading Blade loads during operation Blade dynamic response Blade fatigue stresses Hub and low speed shaft loading Nacelle loading To...

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Hauptverfasser: Burton Tony, Jenkins Nick, Bossanyi Ervin, Sharpe David
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description This chapter contains sections titled: National and international standards Basis for design loads Turbulence and wakes Extreme loads Fatigue loading Stationary blade loading Blade loads during operation Blade dynamic response Blade fatigue stresses Hub and low speed shaft loading Nacelle loading Tower loading Wind turbine dynamic analysis codes Extrapolation of extreme loads from simulations References Appendix 5: dynamic response of stationary blade in turbulent wind Introduction Frequency response function Resonant displacement response ignoring wind variations along the blade Effect of across‐wind turbulence distribution on resonant displacement response Resonant root bending moment Root bending moment background response Peak response Bending moments at intermediate blade positions References
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subjects Alternative & Renewable Energy Sources & Technologies
Design loads for horizontal axis wind turbines
Electrical & Power Engineering
Extrapolation of extreme loads from simulations
Generalised extreme value (GEV)
Guidelines for the Certification of Wind Turbines
International Electrotechnical Commission (IEC)
Operational loads due to steady wind (deterministic component)
Power Generation and Transmission
Sustainable Energy & Development
title Design Loads for Horizontal Axis Wind Turbines
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