Faculty of Technical Sciences

Subject: Energy efficiency of compressed air systems (17.I830)

Native organizations units: No data
General information:
 
Category Scientific-professional
Scientific or art field Mehatronika, robotika i automatizacija i integrisani sistemi
Interdisciplinary Yes
ECTS 4
Educational goal:

The goal of course is basic knowledge about energy efficiency, which allows the student to independently perform engineering analysis of energy efficiency of compressed air systems and methods for increasing the energy efficiency of these systems. Industrial engineers should acquire competence to independently design energy efficient compressed air systems.

Educational outcome:

Students will be able to perform an analysis of energy efficiency of compressed air system and to implement measures that lead to an increase in energy efficiency in the processes of production, distribution and consumption of compressed air. Students should be able to design energy efficient compressed air systems.

Course content:

Introduction to the energy efficiency of compressed air systems. Energy efficiency in the production and preparation of compressed air. Selection of energy efficient pneumatic components. Energy-efficient control of pressure and speed. Optimization of the vacuum systems. Energy efficient control circuits.

Teaching methods:

Classes include lectures on the subject with examples of energy efficient compressed air systems. The laboratory exercises have to encourage teamwork, by working on practically oriented tasks related to the problems of increasing energy efficiency of compressed air. The entire exercises are computer supported.

Literature:
Authors Title Year Publisher Language
Jankes, G. i dr. Priručnik za poboljšanje energetske efikasnosti i racionalnu upotrebu energije u industriji 2009 Mašinski fakultet u Beogradu Serbian language
Šešlija D, Ignjatović I, Dudić S, Lagod B Potential energy savings in compressed air systems in Serbia 2011 African Journal of Business Managagement English
V, Šešlija D, Stojiljković M Cost effectiveness of restoring energy in execution part of pneumatic system 2011 Journal of Scientific and Industrial Research English
Ignjatović I, Šešlija D, Tarjan L, Dudić S Wireless sensor system for monitoring of compressed air filters 2012 Journal of Scientific and Industrial Research English
Ignjatović I, Komenda T, Šešlija D, Malisa V Optimisation of compressed air and electricity consumption in a complex robotic cell 2012 Robotics and Computer-integrated Manufacturing English
Knowledge evaluation:
Course activity Pre-examination Obligations Number of points
Lecture attendance Yes Yes 5.00
Theoretical part of the exam No Yes 50.00
Laboratory exercise defence Yes Yes 40.00
Laboratory exercise attendance Yes Yes 5.00
Lecturers:
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prof. dr Dudić Slobodan

Full Professor

Laboratory classes
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vanr. prof. dr Milenković Ivana

Associate Professor

Laboratory classes
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doc. dr Reljić Vule

Assistant Professor

Laboratory classes
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prof. dr Dudić Slobodan

Full Professor

Lectures

Faculty of Technical Sciences

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© 2024. Faculty of Technical Sciences.