Steam Boilers Hydrodynamic

ID: 3294
Course type: scientific and vocational
Course coordinator: Tucaković R. Dragan
Lecturers: Tucaković R. Dragan
Contact: Tucaković R. Dragan
Level of studies: Ph.D. (Doctoral) studies – Mechanical Engineering
ECTS: 5
Final exam type: oral

Lectures

Goal

Reaching the competence and academic skills and methods for it's acquiring. Developing creative capabilities and mastering the specific practical skills. Goals determine the specific results which should be achieved within the subject. Activities in this subject are in accordance with basic tasks and goals of the study program.

Outcome

PhD student of acquires specific capabilities which are needed for carrying out professional activities: analysis, synthesis and anticipating the results and consequences; use of knowledge from different areas for solving specific problems.

Theoretical teaching

Hydrodynamics of evaporator with natural and forced circulation; Hydrodynamics of crossflow evaporator; Continuous flow characteristics and real characteristics mixture of water and steam; Safety operation of the evaporator; Hydrodynamics of water heater; Hydrodynamics of superheater; Safety operation of the water heater and superheater

Practical teaching

Project - The hydrodynamic calculation of industrial steam boiler with appropriate security checks of individual heating surfaces.

Attendance requirement

Necessary condition: Completed MAS studies Module Thermotechnic or Module Thermoenergetic

Resources

М. А. Стырикович, В. С. Полонский, Г. В. Циклаури; Тепломассообмен и гидродинамика в двухфазных потоках атомных лектрических станций; Иэдательство ”Наука”, Москва, 1982. 3. W. Kastner, V. Kefer, W. Köhler, W. Krätzer; Wärmeübergang und Druckverlust in einseiting beheizten, geneigten und innenberippten Rohren; Siemens Aktiengesellschaft Unternehmensbereich KWU, Erlangen, 1988. 4. W. Kastner, W. Köhler, W. Krätzer; Wärmeübergang im Post-Dryout-Bereich an vertikalen und horizontalen Rohren bei gleichförmiger Beheizung; Abschlußbericht für das Forschungsvorhaben BMFT, 03E-1409-A, 1982

Assigned hours

Total assigned hours: 65

Active teaching (theoretical)

New material: 35
Elaboration and examples (recapitulation): 15

Active teaching (practical)

Auditory exercises: 0
Laboratory exercises: 0
Calculation tasks: 0
Seminar paper: 0
Project: 0
Consultations: 0
Discussion/workshop: 0
Research study work: 0

Knowledge test

Review and grading of calculation tasks: 0
Review and grading of lab reports: 0
Review and grading of seminar papers: 10
Review and grading of the project: 0
Test: 0
Test: 0
Final exam: 5

Knowledge test (100 points total)

Activity during lectures: 10
Test/test: 10
Laboratory practice: 0
Calculation tasks: 0
Seminar paper: 30
Project: 0
Final exam: 50
Requirement for taking the exam (required number of points): 30

Literature

Љ. Бркић, Д. Туцаковић, Т. Живановић; Steam Boilers Hydrodynamic calculation, Faculty of Mechanical Engineering, Belgrade, 2009; Lj. Brkic, T. Zivanovic, D. Tucakovic: Steam Boilers, Faculty of Mechanical Engineering, Belgrade, 2010, (In Serbian); Lj. Brkic, T. Zivanovic, D. Tucakovic: Steam Boilers Thermal Calculation, Faculty of Mechanical Engineering, Belgrade, 2010, (In Serbian)