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#50746 / #5

Seit SoSe 2022

English

Wind Turbine Measurement Techniques

6

Nayeri, Christian

benotet

Portfolioprüfung

Zugehörigkeit


Fakultät V

Institut für Strömungsmechanik und Technische Akustik

35311200 FG Experimentelle Strömungsmechanik

No information

Kontakt


HF 1

Nayeri, Christian

christian.nayeri@tu-berlin.de

Learning Outcomes

The aim of the module is the deepening and practical application of knowledge in the field of wind energy, which is based on the modules "Wind Energy - Fundamentals"("Windenergie-Grundlagen") and "Wind Energy - Project / Deepening"("Windenergie-Projekt/Vertiefung"). Participating students should learn the independent organization of projects and group work, deepening in the area of wind energy and practical experience in dealing with wind power plants. After a successful attendance of the course, the students will have in-depth knowledge in the field of wind turbine measurement techniques in the laboratory, general preparation, and conduction of measurement campaigns and post-processing and evaluation of scientific data. The course is principally designed to impart: Technical skills 30%, methodological skills 30%, system skills 20%, social skills 20%

Content

"Wind Turbine Measurement Techniques" is an interactive laboratory course. During the semester the students develop a measurement campaign and consequently perform measurements in the wind tunnel and at a generator test stand. Application-related aerodynamic and electrotechnical interrelations are mediated and the use of measurement technology, as well as the evaluation and analysis of data, are applied. To prepare the students for their master thesis and other scientific assignments, small research tasks are carried out and a scientific paper is authored.

Module Components

Pflichtgruppe:

All Courses are mandatory.

Course NameTypeNumberCycleLanguageSWSVZ
Wind Turbine Measurement TechniquesIV3531 L 026SoSeEnglish4

Workload and Credit Points

Wind Turbine Measurement Techniques (IV):

Workload descriptionMultiplierHoursTotal
Attendance15.03.0h45.0h
Measurement campaign1.010.0h10.0h
Preparation and follow-up15.05.0h75.0h
Scientific paper1.030.0h30.0h
160.0h(~6 LP)
The Workload of the module sums up to 160.0 Hours. Therefore the module contains 6 Credits.

Description of Teaching and Learning Methods

The module combines theory and practice in the context of regenerative energies. It includes the learning of research-oriented simulation software and measurement technology laboratory tests as well as scientific writing. The focus is on the project work in small groups, whereby the independent scientific work, small group presentations, preparation of project reports as well as the independent elaboration of scientific content beyond frontal teaching plays an important role.

Requirements for participation and examination

Desirable prerequisites for participation in the courses:

The course does not provide the basics of wind energy and fluid dynamics but deepens existing knowledge and builds upon it. Therefore the successful completion of the modules "Wind Energy - Basics"("Windenergie - Grundlagen") and "Wind Energy - Project / Deepening"("Windenergie - Projekt/Vertiefung") are highly recommended.

Mandatory requirements for the module test application:

This module has no requirements.

Module completion

Grading

graded

Type of exam

Portfolio examination

Type of portfolio examination

100 Punkte insgesamt

Language

English

Test elements

NamePointsCategorieDuration/Extent
Presentations50oralNo information
Scientific Paper50writtenNo information

Grading scale

Notenschlüssel »Notenschlüssel 2: Fak IV (2)«

Gesamtpunktzahl1.01.31.72.02.32.73.03.33.74.0
100.0pt95.0pt90.0pt85.0pt80.0pt75.0pt70.0pt65.0pt60.0pt55.0pt50.0pt

Test description (Module completion)

"Portfolioprüfung" with several components as described in "Prüfungselemente".

Duration of the Module

The following number of semesters is estimated for taking and completing the module:
1 Semester.

This module may be commenced in the following semesters:
Wintersemester.

Maximum Number of Participants

The maximum capacity of students is 25.

Registration Procedures

Registration for the module is done by e-mail before the start of the first lecture week. The e-mail address will be published on the homepage of the "chair of fluid dynamics" (FG "Experimentelle Strömungsmechanik"). If the number of applications exceeds the number of available participants, the participants will be selected by lottery (Losverfahren).

Recommended reading, Lecture notes

Lecture notes

Availability:  unavailable

 

Electronical lecture notes

Availability:  unavailable

 

Literature

Recommended literature
No recommended literature given

Assigned Degree Programs


This module is used in the following Degree Programs (new System):

Studiengang / StuPOStuPOsVerwendungenErste VerwendungLetzte Verwendung
Gebäudeenergiesysteme (M. Sc.)15SoSe 2022SoSe 2024
Maschinenbau (M. Sc.)18SoSe 2022SoSe 2024
Physikalische Ingenieurwissenschaft (M. Sc.)220SoSe 2022SoSe 2024
Regenerative Energiesysteme (M. Sc.)15SoSe 2022SoSe 2024
Wirtschaftsingenieurwesen (M. Sc.)15SoSe 2022SoSe 2024

Students of other degrees can participate in this module without capacity testing.

Master students in the fields mechanical engineering, physical engineering, process technology, renewable energy systems or the like.

Miscellaneous

No information