Faculty of Technical Sciences

Subject: An Integral Approach to the Use of Conventional and Renewable Energy Sources Applied to Energy Systems (17.ZD040)

Native organizations units: Department of Environmental Engineering and Occupational Safety and Health
General information:
 
Category Professional-applicative
Scientific or art field Environment Protection Engineering
ECTS 10

Acquisition of knowledge and training of students for further application and practice in energy use in the field of conventional and renewable energy sources.

Students acquire the necessary knowledge and practical experience for further application of conventional and renewable energy sources in energy systems.

Thermo-economic and environmental analysis and optimization of energy systems that use conventional energy sources. Cost-benefit analysis and calculation of environmental costs in energy systems that use conventional energy sources. Technology and systems for using Renewable Energy Sources (RES) in all modules, formed depending on the types of sources are considered from the following aspects: • Availability of resources in Serbia and abroad • Technologies and systems for converting energy from renewable sources in other useful forms of energy, • The possibilities and technical solutions for storage of produced energy, • Techno-economic analysis (using software at www.izzs.uns.ac.rs and www.peec.ftn.uns.ac.rs • Assessing the impact of RES on the environment • The status and future vision of the development of the observed renewable energy source (R&D) Modules of RES: 1.Solar energy 2.Wind Energy 3.Geothermal energy 4.Hydro energy 5.Biomass energy 6.Bio-fuels (biodiesel and biogas) 7.Nuclear energy 8.Tidal energy, wave energy and ocean thermal energy 9. Advanced technologies of RES (Compressed hydrogen, Fuel cells,...etc.) 10.Energy storage

Lectures and consultations, including mentors working with students in order to train them for further independent research, scientific and professional work.

Authors Title Year Publisher Language
Kreith F., Goswami Y. D. Handbook of Energy Efficiency and Renewable Energy 2007 CRC press, Taylor & Francis Group, LLC, NY English
Tester J., Drake E., Driscoll M., Golay M., Peters W. A. Sustainable Energy 2005 The MIT Press, GB English
Lin D.H.F., Liptak B.G. ed Environmental Engineer s Handbook 1999 Boca Raton: CRC Press LLC English
Dewulf J., Van Langenhove H. Renewables-Based Technology, Sustainability Assessment 2006 John Wiley & Sons Ltd, England English
Goswami Y. D, Kreith F. Energy Conversion 2008 CRC press, Taylor & Francis Group, Boca Raton, FL English
Kaltschmitt M., Streicher W., Wiese A. Renewable Energy: Technology, Economics and Environment 2007 Springer Berlin Heidelberg New York English
Himmelblau D.M., Bischoff K.B. Process Analysis and Simulation: Deterministic Systems 1968 John Wiley & Sons, NY English
Kotas T. The Exergy Method of Thermal Plant Analysis 1985 Butterworths English
Elliott T. C., Chen K., Swanekamp R. C. Standard Handbook of Powerplant Engineering 1998 McGraw Hill, NY English
Bejan A.., Tsatsaronis G., Moran M. Thermal Design and Optimization 1996 John Wiley and Sons, NY English
Gvozdenac, D., Nakomčić-Smaragdakis, B., Gvozdenac-Urošević, B. Renewable Energy 2012 Faculty of Technical Sciences, Novi Sad English
Course activity Pre-examination Obligations Number of points
Oral part of the exam No Yes 50.00
Test Yes Yes 10.00
Lecture attendance Yes Yes 5.00
Homework Yes Yes 5.00
Project Yes Yes 30.00

Prof. Nakomčić-Smaragdakis Branka

Full Professor

Lectures

Prof. Nakomčić-Smaragdakis Branka

Full Professor

Study research work

Faculty of Technical Sciences

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© 2024. Faculty of Technical Sciences.