Academic year 2018/2019 |
Supervisor: | prof. Ing. Josef Štětina, Ph.D. | |||
Supervising institute: | EÚ | |||
Teaching language: | Czech | |||
Aims of the course unit: | ||||
Make easy students examination from Tthermomechanics. Obtain practical view of problems thermomechanics. | ||||
Learning outcomes and competences: | ||||
Students will acquire skills to carry out technical computation in the area of thermodynamics and heat transfer. Computation of heat engines and cooling systems. Heat balance of material and machine systems, in gases, vapors, buildings and technological processes | ||||
Prerequisites: | ||||
Physics | ||||
Course contents: | ||||
Application matters from subject „ Thermomechanics" on calculations concrete problems in the area: basic reverse and nonreversible changes state ideal gas; gas cycle - engine, gas turbine; solving reverse changes state in par; mixture of gases, gas and par, calculations with damp afloat; fluxion gas and par nozzles and diffuser; calculations heat transfer, calculations exchangers. | ||||
Teaching methods and criteria: | ||||
The course is taught through exercises which are focused on practical topics presented in lectures. | ||||
Assesment methods and criteria linked to learning outcomes: | ||||
Participation in seminar, solve of problems and answers on control questions. | ||||
Controlled participation in lessons: | ||||
Solve of two problems and answers on questions. | ||||
Type of course unit: | ||||
Computer-assisted exercise | 13 × 2 hrs. | optionally | ||
Course curriculum: | ||||
Computer-assisted exercise | 1. Basic thermodynamic quantity. Problems data aqusiton these quantities. Dynamic and static pressure. 2. Basic action with ideal fumes. Compressor calculation. 3.-4. Gas cycle - engine. Thermal efficiency. Calculation circulation petrol and diesel engine. 5. Alternative fuel. Hydrogen. 6. Heat wave pump, HVAC. Heating and coefficient of performance. Effectiveness running. 7. Vapour, power cycle heat power station on coal, gas. Nuclear power station. 8. Humid air and his influences. 9. Fluxion gas. 10. Heat transfer. 11. Infracamera and its usage for heat transfer 12. Usage solar energy. 13. Seminar |
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The study programmes with the given course: | |||||||||
Programme | Study form | Branch | Spec. | Final classification | Course-unit credits | Obligation | Level | Year | Semester |
M2I-P | full-time study | M-STM Manufacturing Technology and Management in Industry | P linked to branch B-STG | Cr | 0 | Elective (voluntary) | 2 | 1 | S |
M2I-P | full-time study | M-SLE Foundry Technology | P linked to branch B-STG | Cr | 0 | Elective (voluntary) | 2 | 1 | S |
M2I-P | full-time study | M-FLI Fluid Engineering | P linked to branch B-EPP | Cr | 0 | Elective (voluntary) | 2 | 1 | S |
M2I-P | full-time study | M-TEP Environmental Engineering | P linked to branch B-EPP | Cr | 0 | Elective (voluntary) | 2 | 1 | S |
M2I-P | full-time study | M-ENI Power Engineering | P linked to branch B-EPP | Cr | 0 | Elective (voluntary) | 2 | 1 | S |
M2I-P | full-time study | M-STG Manufacturing Technology | P linked to branch B-STG | Cr | 0 | Elective (voluntary) | 2 | 1 | S |
B3A-P | full-time study | B-MAI Mathematical Engineering | -- | Cr | 0 | Elective (voluntary) | 1 | 3 | S |
B3S-P | full-time study | B-EPP Power Engineering, Processes and Environment | -- | Cr | 0 | Elective (voluntary) | 1 | 2 | S |
B3S-P | full-time study | B-SSZ Machine and Equipment Construction | -- | Cr | 0 | Elective (voluntary) | 1 | 2 | S |
Faculty of Mechanical Engineering
Brno University of Technology
Technická 2896/2
616 69 Brno
Czech Republic
+420 541 14n nnn
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