pre051 Renewable Energy Systems Laboratory and Modelling (Vollständige Modulbeschreibung)

pre051 Renewable Energy Systems Laboratory and Modelling (Vollständige Modulbeschreibung)

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Modulbezeichnung Renewable Energy Systems Laboratory and Modelling
Modulkürzel pre051
Kreditpunkte 6,0 KP
Verantwortliche Einrichtung Institut für Physik
Zuständige Personen
Modulverantwortung:
Joachim Peinke, Martin Knipper
Prüfungsberechtigt:
Tanja Behrendt, Andreas Günther, Martin Knipper, Michael Hölling, Herena Torio
Teilnahmevoraussetzungen
Unterrichtsprachen
Lernergebnisse/Kompetenzen

After successful completion of the module students should be able to:

  • implement as well as critically analyse and discuss models and their limitations using various methods
  • develop research questions and approaches to answer them
  • perform laboratory measurements or simulations in a university environment
  • analyse and interpret their results using relevant and widely used software tools
  • communicate their results with international and interdisciplinary partners according to scientific standards 
  • write and evaluate scientific papers

 

 

 

Modulinhalte

In this module the students obtain the knowledge and skills on programming, modelling and critically analysing simulations and apply those in a topic on renewable energies of their choice. Students have the choice to simulate specific renewable energy components or systems which are later investigated in hands-on laboratories. Through this students learn to critically discuss the results of their simulations and compare them to real measurements as well the results from differently implemented simulations from which they deduce the limits and validity of the respective models.
 

Modelling and Simulation of Renewable Energy Systems (Lecture & Seminar - 90 h workload)

  • numerical concepts
  • differential equations
  • discrete models
  • statistical modeling
  • algorithms to develop simulations
  • building a simple model from the field of renewable energies
  • various tools to implement and critically analyse the performance and limits of a model
  • examples of various simulation approaches

 

Laboratory on Renewable Energy Systems (Lab work - 90 h workload)

Theory, Hands-on experience and reporting on either:

  • PV System
  • Wind Energy Systems
  • Meteorological Resource Assessment

 

Write and review a paper; Present own paper at student conference on the Performance of Renewable Energy Systems

 

 

 

Literaturempfehlungen
  • T. Agami-Reddy, Applied Data Analysis and Modeling for Energy Engineers and Scientists, 2011, SpringerScience+BusinessMedia, LLC2011
Zu erbringende Leistungen
Prüfungsart, -umfang, -dauer

Portfolio (conference Presentation (approx. 15 min) and conference article (6 pages)

Prüfungszeiten

Student conference at the end of the semester

Dauer in Semestern 1 Semester
Angebotsrhythmus Sommersemester
Workload
Arbeitsaufwand gesamt Davon Präsenzzeit
180 h

180 hours

Lehrveranstaltungsform
Veranstaltungsart SWS Angebotsrhythmus Workload Präsenzzeit
Vorlesung 2 SoSe und WiSe 28 h
Werkstatt/Labor 2 SoSe und WiSe 28 h
Zusätzliche Hinweise

Aufnahmekapazität:
unbegrenzt

Lehr-/Lernform:
Lecture and Laboratory

Verwendbarkeit des Moduls
  • Master Sustainable Renewable Energy Technologies > Mastermodule
  • Master Sustainable Renewable Energy Technologies > Pflichtmodule