Faculty of Technical Sciences

Subject: Methods of energy management (17.DM309)

Native organizations units: Department of Energy and Process Engineering, Chair of Thermal Engineering
General information:
 
Category Scientific-professional
Scientific or art field Termotehnika, termoenergetika i upravljanje energijom
Interdisciplinary No
ECTS 10
Educational goal:

This field should enable students to acquire theoretical and primarely practical knowledge on functioning energy systems and their efficiency and management. This educational profile should enable students to in further practical work contributes on local and national level in social and economical and technological development.

Educational outcome:

Mastering academic, theoretical and methodological scinetific disciplines within this subject will help students to acquire general knowledge and skills in the field of economy, power engineering, environment protection and will be able to: critically and independently consider theory and practice approach, and apply metodology in research work, develop communication skills and businee ethics respect, apply acquired knowledge in practical work. Students who attend the course in ENERGY MANAGEMENT METHODS should be capable to manage small, middlle and big energy systems as well as activities on planning and creating energy politics on local and national level.

Course content:

Theory lectures – significance of energy management and rational energy consumption in idustry. – Defining energy flow, Relationship between power engineering and production. Energy indicators and energy profile in production and consumption of energy. – Energy laws and standards which influence energy consumption, Indicators for energy consumption. – Energy efficiency analysis in industry - Energy efficiency analysis in construction works. Energy saving measures. Practical lecutres: carrying out energy bilance of a company and proposing measures for energy managment improvement (seminar paper)

Teaching methods:

Lectures, independent study and research work, consultations. Lectures are held in combined way. Theoretical part is presented in lectures and it is followed by appropriate exampled contributing easier understanding of the subject content. Students expand knowledge through study and research work, studying of scientific journals and other literature. In cooperation with professor, student is enabled or independently write scientific papers.

Literature:
Authors Title Year Publisher Language
D.H.F. Lui, B. Liptak (editors) ENVIRONMENTAL ENGINEER"S HANDBOOK 1999 CRC Press English
Petrecca, G. Industrial Energy Management: Principles and applications 1993 Kluwer Academic Publishers English
Devins, D.W. ENERGY: ITS PHYICAL IMPACT ON THE ENVIRONMENT 1988 Robert E. Krieger pub.co, Malabar, Florida English
Capehart, B. L., Turner, W. C., Kennedy, W. J. GUIDE TO ENERGY MANAGEMENT (4th edition) 2003 The Fairmont Press English
Capehart, B. L., Turner, W. C., Kennedy, W. J. GUIDE TO ENERGY MANAGEMENT (4th edition) 2003 The Fairmont Press English
Shepherd, W., Shepherd, D. W. ENERGY STUDIES (2nd edition) 2003 Imperial College Press, London English
Schnelle, K.B., Brown, C.A. Air Pollution Control Technology Handbook 2002 CRC Press, New York English
Eastop, T.D., Croft, D.R. Energy efficiency : for engineers and technologists 1990 Longman Scientific & Technical, Harlow English
Harris, P. PREPARING THE COMPANY ENERGY PLAN – A Management planning guide 1986 Energy Publications English
Knowledge evaluation:
Course activity Pre-examination Obligations Number of points
Term paper Yes Yes 50.00
Oral part of the exam No Yes 50.00
Lecturers:
API Image

prof. dr Gvozdenac Urošević Branka

Full Professor

Lectures
API Image

prof. dr Gvozdenac Urošević Branka

Full Professor

Study research work

Faculty of Technical Sciences

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© 2024. Faculty of Technical Sciences.