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Collection Research topics in wind energy
- Editeur : Springer
- ISSN : 2196-7806
Documents disponibles dans la collection
Faire une suggestion Affiner la rechercheWind energy, impact of turbulence
Titre : Wind energy, impact of turbulence Type de document : texte imprimé Auteurs : Michael Holling, Editeur scientifique ; Joachim Peinke, Editeur scientifique ; Stefan Ivanell, Editeur scientifique Editeur : Berlin : Springer Année de publication : 2014 Collection : Research topics in wind energy, ISSN 2196-7806 num. Vol. 2 Importance : IX,210 p. Présentation : ill. Format : 24 cm ISBN/ISSN/EAN : 978-3-642-54695-2 Note générale : Bibliogr. p. 208. - Index Langues : Anglais (eng) Mots-clés : Wind energy
Turbulence
Conversion ProcessIndex. décimale : 620.92:551.55 Utilisation de l'énergie éolienne Résumé :
This book presents the results of the seminar "Wind Energy and the Impact of Turbulence on the Conversion Process" which was supported from three societies, namely the EUROMech, EAWE and ERCOFATC and took place in Oldenburg, Germany in spring 2012.The seminar was one of the first scientific meetings devoted to the common topic of wind energy and basic turbulence. The established community of researchers working on the challenging puzzle of turbulence for decades met the quite young community of researchers, who face the upcoming challenges in the fast growing field of wind energy applications.From the fluid mechanical point of view, wind turbines are large machines operating in the fully turbulent atmospheric boundary layer. In particular they are facing small-scale turbulent inflow conditions. It is one of the central puzzles in basic turbulence research to achieve a fundamental understanding of the peculiarities of small-scale turbulence. This book helps to better understand the resulting aerodynamics around the wind turbine's blades and the forces transmitted into the machinery in this context of puzzling inflow conditions. This is a big challenge due to the multi-scale properties of the incoming wind field ranging from local flow conditions on the profile up to the interaction of wake flows in wind farms.Note de contenu : Summary :
1. Rotor Aerodynamics.
2. Turbulence.
3. Experiments.
4. Flow Modeling.
5. Atmospheric Boundary Level.Wind energy, impact of turbulence [texte imprimé] / Michael Holling, Editeur scientifique ; Joachim Peinke, Editeur scientifique ; Stefan Ivanell, Editeur scientifique . - Springer, 2014 . - IX,210 p. : ill. ; 24 cm. - (Research topics in wind energy, ISSN 2196-7806; Vol. 2) .
ISBN : 978-3-642-54695-2
Bibliogr. p. 208. - Index
Langues : Anglais (eng)
Mots-clés : Wind energy
Turbulence
Conversion ProcessIndex. décimale : 620.92:551.55 Utilisation de l'énergie éolienne Résumé :
This book presents the results of the seminar "Wind Energy and the Impact of Turbulence on the Conversion Process" which was supported from three societies, namely the EUROMech, EAWE and ERCOFATC and took place in Oldenburg, Germany in spring 2012.The seminar was one of the first scientific meetings devoted to the common topic of wind energy and basic turbulence. The established community of researchers working on the challenging puzzle of turbulence for decades met the quite young community of researchers, who face the upcoming challenges in the fast growing field of wind energy applications.From the fluid mechanical point of view, wind turbines are large machines operating in the fully turbulent atmospheric boundary layer. In particular they are facing small-scale turbulent inflow conditions. It is one of the central puzzles in basic turbulence research to achieve a fundamental understanding of the peculiarities of small-scale turbulence. This book helps to better understand the resulting aerodynamics around the wind turbine's blades and the forces transmitted into the machinery in this context of puzzling inflow conditions. This is a big challenge due to the multi-scale properties of the incoming wind field ranging from local flow conditions on the profile up to the interaction of wake flows in wind farms.Note de contenu : Summary :
1. Rotor Aerodynamics.
2. Turbulence.
3. Experiments.
4. Flow Modeling.
5. Atmospheric Boundary Level.Exemplaires
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