Higher course of process phenomena

ID: 3495
Course type: scientific and vocational
Course coordinator: Stamenić S. Mirjana
Lecturers: Stamenić S. Mirjana
Contact: Stamenić S. Mirjana
Level of studies: Ph.D. (Doctoral) studies – Mechanical Engineering
ECTS: 5
Final exam type: written+oral

Lectures

Goal

Expansion of basic knowledge in the field of transport phenomena and heat substances in the process industry. Application of steady and unsteady state heat and mass transfer in two phase multiple component systems in process equipment.

Outcome

Mastering of mathematical modeling and design procedures necessary to determine the intensity of heat and mass transfer and pressure drop in chemical apparatuses. Training for the research and design in the field of process equipment.

Theoretical teaching

Molecular transport phenomena. Steady and unsteady state heat and mass transfer in fluids. Differential equations of convective transport of momentum, heat and substance. Laminar and turbulent flow. Simplified models of convective transport. Analysis of heat and mass transfer resistances. Coefficients of heat and mass transfer. Similarity theory. Analogies between mass, heat and momentum transfer. Mass transfer across a phase boundary. Inter-phase turbulence. Simultaneous mass and heat transfer. Wet-bulb temperatures. Boiling, condensation and thermal radiation. Typical cases in process equipment (heat exchangers, columns, furnaces). Unsteady heat and mass transfer in solid phase.

Practical teaching

Examples of the research in the field of heat and mass transfer and pressure drop

Attendance requirement

-

Resources

Resources are books listed within chapter - Literature

Assigned hours

Total assigned hours: 65

Active teaching (theoretical)

New material: 45
Elaboration and examples (recapitulation): 5

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: 50
Laboratory practice: 0
Calculation tasks: 10
Seminar paper: 0
Project: 0
Final exam: 30
Requirement for taking the exam (required number of points): 70

Literature

Jaćimović B., Genić S., Heat Transfer Operations And Equaipment, Part 1: Recuperative Heat Exchangers, Faculty of Mechanical Engineering Belgrade, 2022.; Jaćimović B., Genić S., Mass Transfer Operations And Equipment, Part 1: Mass Transfer Basics, Faculty of Mechanical Engineering Belgrade, 2019.; Jaćimović B., Genić S., Mass Transfer Operations And Equipment, Part 2: Mass Transfer Operations, Faculty of Mechanical Engineering Belgrade, 2010.; Genić, S., Jaćimović, B., Jarić, M., Budimir, N., Process Fluid Properties, SMEITS, 2014.; Foust, A.S., et al,, PRINCIPLES OF UNIT OPERATIONS, John Wiley & Sons, New Yоrk, 1980.