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Module code: EE1502 |
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2V (2 hours per week) |
2 |
Semester: 5 |
Mandatory course: yes |
Language of instruction:
German |
Assessment:
Written exam, duration: 90 minutes
[updated 26.01.2023]
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EE1502 (P212-0025) Energy system technology / Renewable energies, Bachelor, ASPO 01.10.2022
, semester 5, mandatory course
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30 class hours (= 22.5 clock hours) over a 15-week period. The total student study time is 60 hours (equivalent to 2 ECTS credits). There are therefore 37.5 hours available for class preparation and follow-up work and exam preparation.
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Recommended prerequisites (modules):
None.
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Recommended as prerequisite for:
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Module coordinator:
Prof. Dr. Marc Deissenroth-Uhrig |
Lecturer: Prof. Dr. Marc Deissenroth-Uhrig
[updated 16.09.2018]
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Learning outcomes:
After successfully completing this course, students will be able to: - describe the function of energy supply (conversion and distribution in grids) with centralized and decentralized systems/structures for heat and electric power, taking into regard legal frameworks and regulations - demonstrate the difference between reserves and resources - explain the terms base load, medium load and peak load - carry out energy balancing and fuel interchangeability in p-V, T-s, h-s diagrams and steam tables. and evaluate ideal and real cycle processes - describe the basics of plant and circuit diagrams for energy supply processes/conversion processes
[updated 26.01.2023]
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Module content:
1. Fundamentals of energy technology 2. Fuel chemistry 3. Primary energy 4. Energy reserves 5. Central energy generating systems 6. Decentralized energy generating systems 7. Renewable energy systems 8. Conversion and distribution in networks 9. Economic efficiency 10. The legal framework in Germany and the EU
[updated 26.01.2023]
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Recommended or required reading:
Cerbe, Günter; Hoffmann, Hans-Joachim: Einführung in die Thermodynamik (bzw. Technische Thermodynamik), Hanser, 2002, (akt. Aufl.) Elsner, Norbert: Grundlagen der technischen Thermodynamik. Band 1: Energielehre und Stoffverhalten, Akademie-Verlag, 1993 Elsner, Norbert: Grundlagen der technischen Thermodynamik. Band 2: Wärmeübertragung, Akademie-Verlag, 1993 VDI (Hrsg.): VDI-Wärmeatlas, Springer, (akt. Aufl.)
[updated 26.01.2023]
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