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302.034 Thermodynamics in power engineering
This course is in all assigned curricula part of the STEOP.
This course is in at least 1 assigned curriculum part of the STEOP.

2021W, VO, 2.0h, 3.0EC
TUWEL

Properties

  • Semester hours: 2.0
  • Credits: 3.0
  • Type: VO Lecture
  • Format: Hybrid

Learning outcomes

After successful completion of the course, students are able to:

  • apply generalized equations of state for multiple component systems
  • determine conditions for thermodynamic equilibrium in multiple component systems
  • determine conditions for chemical equilibrium of reacting systems
  • determine reaction rates for selected reactions
  • describe thermal separation processes
  • analyse important energetic processes (gasification, thermal separation processes, CCS, air separation, IGCC, Kraft-Process, ETES, LAES)

Subject of course

Basics of complex thermodynamic methods and processes which are relevant in Energy Technology.

Two component-Thermodynamics,

gasification, gas turbine cycles,

low temperature thermodynamics, 

thermal separation processes.

Teaching methods

  •  Distance-Learning with  Zoom and/or Gotomeeting

  • START on Tuesday, Oktober 12, 2021 at 12h15

  • Presentation of theory and examples

  • collaboration

Mode of examination

Written

Additional information

The LVA is plannend to be present at 95%.

Lecturers

Institute

Course dates

DayTimeDateLocationDescription
Tue12:15 - 14:1512.10.2021 - 25.01.2022 ZOOM (LIVE)Thermodynamik in der Energietechnik
Thermodynamics in power engineering - Single appointments
DayDateTimeLocationDescription
Tue12.10.202112:15 - 14:15 ZOOMThermodynamik in der Energietechnik
Tue19.10.202112:15 - 14:15 ZOOMThermodynamik in der Energietechnik
Tue09.11.202112:15 - 14:15 ZOOMThermodynamik in der Energietechnik
Tue16.11.202112:15 - 14:15 ZOOMThermodynamik in der Energietechnik
Tue23.11.202112:15 - 14:15 ZOOMThermodynamik in der Energietechnik
Tue30.11.202112:15 - 14:15 ZOOMThermodynamik in der Energietechnik
Tue07.12.202112:15 - 14:15 ZOOMThermodynamik in der Energietechnik
Tue14.12.202112:15 - 14:15 ZOOMThermodynamik in der Energietechnik
Tue11.01.202212:15 - 14:15 ZOOMThermodynamik in der Energietechnik
Tue18.01.202212:15 - 14:15 ZOOMThermodynamik in der Energietechnik
Tue25.01.202212:15 - 14:15 ZOOMThermodynamik in der Energietechnik

Examination modalities

Prüfungsdauer: 120 min   !!!

Exams

DayTimeDateRoomMode of examinationApplication timeApplication modeExam
Thu14:00 - 16:0006.10.2022EI 9 Hlawka HS - ETIT written06.09.2022 08:00 - 03.10.2022 12:00TISSPrüfung
Thu12:00 - 14:0001.12.2022GM 3 Vortmann Hörsaal - VT written09.11.2022 00:00 - 27.11.2022 23:30TISSPrüfung
Tue09:00 - 11:3031.01.2023GM 3 Vortmann Hörsaal - VT written09.01.2023 00:00 - 30.01.2023 12:00TISSPrüfung
Wed10:00 - 12:0001.03.2023GM 3 Vortmann Hörsaal - VT written06.02.2023 08:00 - 27.02.2023 08:00TISSPrüfung
Fri10:00 - 12:0005.05.2023GM 3 Vortmann Hörsaal - VT written07.04.2023 10:00 - 03.05.2023 16:00TISSPrüfung
Tue09:00 - 11:0011.07.2023GM 3 Vortmann Hörsaal - VT written19.06.2023 08:00 - 10.07.2023 08:00TISSPrüfung

Course registration

Use Group Registration to register.

Group Registration

GroupRegistration FromTo
Haider04.09.2021 08:0004.02.2022 08:00

Curricula

Study CodeSemesterPrecon.Info
033 245 Mechanical Engineering STEOP
Course requires the completion of the introductory and orientation phase
033 282 Mechanical Engineering - Management STEOP
Course requires the completion of the introductory and orientation phase
066 445 Mechanical Engineering STEOP
Course requires the completion of the introductory and orientation phase
066 460 Physical Energy and Measurement Engineering
066 461 Technical Physics
066 473 Chemical and Process Engineering
066 482 Mechanical Engineering - Management STEOP
Course requires the completion of the introductory and orientation phase
700 Mechanical Engineering
700 Mechanical Engineering

Literature

No lecture notes are available.

Language

German