Vorlesung: 5.04.4235 Design of Wind Energy Systems - Details

Vorlesung: 5.04.4235 Design of Wind Energy Systems - Details

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Veranstaltungsname Vorlesung: 5.04.4235 Design of Wind Energy Systems
Untertitel
Veranstaltungsnummer 5.04.4235
Semester SoSe2017
Aktuelle Anzahl der Teilnehmenden 13
erwartete Teilnehmendenanzahl 25
Heimat-Einrichtung Institut für Physik
Veranstaltungstyp Vorlesung in der Kategorie Lehre
Erster Termin Dienstag, 04.04.2017 14:00 - 16:00, Ort: W33 0-003
Art/Form V
Voraussetzungen Wind Energy Utilization (Bachelor) or Wind Energy (Master)
Leistungsnachweis Exam or presentation or oral exam or homework or practical report
Lehrsprache englisch
Info-Link http://www.uni-oldenburg.de/fileadmin/user_upload/physik/PDF/Modulhandbuecher/Modulhandbuch_Fach-Master_Physik_2014_2015.pdf#page=44
Sonstiges This class is part of a module that includes class 5.04.4236 - Aeroelastic Simulation of Wind Turbines.
Please subscribe to that class as well.
For those interested in improving their programming skills with python, we use the initiative of DataCamp for the classroom. We will share links to individual interactive online courses. Find more at https://www.datacamp.com/groups/education.
ECTS-Punkte 3

Räume und Zeiten

W33 0-003
Dienstag: 14:00 - 16:00, wöchentlich (14x)

Studienbereiche

Modulzuordnungen

Kommentar/Beschreibung

The students attending the course will have the possibility to expand and sharpen of their knowledge about wind turbine design from the basic courses. The lectures include topics covering the whole spectrum from early design phase to the operation of a wind turbine. Students will learn in exercises how to calculate and evaluate design aspects of wind energy converters.
At the end of the lecture, they should be able to:
+ estimate the site specific energy yield,
+ calculate the aerodynamics of wind turbines using the blade element momentum theory,
+ model wind fields to obtain specific design situations for wind turbines,
+ estimate the influence of dynamics of a wind turbine, especially in the context of fatigue loads,
+ transfer their knowledge to more complex topics such as simulation and measurements of dynamic loads,
+ calculate the economic aspects of wind turbines.

Introduction to industrial wind turbine design,
+ rotor aerodynamics and Blade Element Momentum (BEM) theory,
+ dynamic loading and system dynamics,
+ wind field modelling for fatigue and extreme event loading,
+ design loads and design aspects of onshore wind turbines,
+ simulation and measurements of dynamic loads,
+ design of offshore wind turbines,
+ power quality and grid integration on wind turbines.

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