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Modern and larger horizontal-axis wind turbines with power capacity reaching 15 MW and rotors of more than 235-meter diameter are under continuous development for the merit of minimizing the unit cost of energy production (total annual cost/annual energy produced). Such valuable advances in this com...
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oapen-20.500.12657-438392021-01-25T13:50:39Z Design Optimization of Wind Energy Conversion Systems with Applications Maalawi, Karam Y. Technology & Engineering Environmental General bic Book Industry Communication::T Technology, engineering, agriculture::TQ Environmental science, engineering & technology Modern and larger horizontal-axis wind turbines with power capacity reaching 15 MW and rotors of more than 235-meter diameter are under continuous development for the merit of minimizing the unit cost of energy production (total annual cost/annual energy produced). Such valuable advances in this competitive source of clean energy have made numerous research contributions in developing wind industry technologies worldwide. This book provides important information on the optimum design of wind energy conversion systems (WECS) with a comprehensive and self-contained handling of design fundamentals of wind turbines. Section I deals with optimal production of energy, multi-disciplinary optimization of wind turbines, aerodynamic and structural dynamic optimization and aeroelasticity of the rotating blades. Section II considers operational monitoring, reliability and optimal control of wind turbine components. 2020-12-15T14:02:31Z 2020-12-15T14:02:31Z 2020 book 9781838803292 https://library.oapen.org/handle/20.500.12657/43839 eng application/pdf n/a external_content.pdf InTechOpen IntechOpen http://dx.doi.org/10.5772/intechopen.82111 105984 http://dx.doi.org/10.5772/intechopen.82111 09f6769d-48ed-467d-b150-4cf2680656a1 b818ba9d-2dd9-4fd7-a364-7f305aef7ee9 9781838803292 Knowledge Unlatched (KU) IntechOpen Knowledge Unlatched open access |
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Modern and larger horizontal-axis wind turbines with power capacity reaching 15 MW and rotors of more than 235-meter diameter are under continuous development for the merit of minimizing the unit cost of energy production (total annual cost/annual energy produced). Such valuable advances in this competitive source of clean energy have made numerous research contributions in developing wind industry technologies worldwide. This book provides important information on the optimum design of wind energy conversion systems (WECS) with a comprehensive and self-contained handling of design fundamentals of wind turbines. Section I deals with optimal production of energy, multi-disciplinary optimization of wind turbines, aerodynamic and structural dynamic optimization and aeroelasticity of the rotating blades. Section II considers operational monitoring, reliability and optimal control of wind turbine components. |
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2020 |
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