Course detail
Nuclear Power Engineering
FSI-LJEAcad. year: 2012/2013
The subject makes familiar with elementary principles of nuclear energy conversions in to the thermal, mechanical and electrical energies and fundamental and detailed design of reactors and nuclear power plant equipments where mentioned conversions of energies take place. An attention is dedicated to fundaments of nuclear fuel preparation, manufacture, reprocessing, storage and transmutation and nuclear wastes management with regard to the at Czech Atomic Law. Safety, technical tools to meet safety requirements as well as enviromental problems of nuclear power plants are studied. Ways of nuclear power plant upgrades by passive safety systems are analysed.
Language of instruction
Number of ECTS credits
Mode of study
Guarantor
Department
Learning outcomes of the course unit
Prerequisites
Co-requisites
Planned learning activities and teaching methods
Assesment methods and criteria linked to learning outcomes
Exam: Test of nuclear energetics principles knowledge, nuclear equipment knowledge, ensuring of nuclear safety knowledge.
Course curriculum
Work placements
Aims
Specification of controlled education, way of implementation and compensation for absences
Credit attendance is obligatory and it will be checked. Maximum number of nonexcused absences are 2. In case of higher absence is the student obligated to do an individual work in accordance with teachers requirements.
Recommended optional programme components
Prerequisites and corequisites
Basic literature
Recommended reading
Heřmanský, B.: Termomechanika jaderných reaktorů. Academia, 1986
Classification of course in study plans
- Programme N2301-2 Master's
branch M-FLI , 1 year of study, summer semester, compulsory-optional
branch M-FLI , 1 year of study, summer semester, compulsory-optional
branch M-TEP , 1 year of study, summer semester, compulsory-optional
branch M-TEP , 1 year of study, summer semester, compulsory-optional
branch M-ENI , 1 year of study, summer semester, compulsory
branch M-ENI , 1 year of study, summer semester, compulsory
Type of course unit
Lecture
Teacher / Lecturer
Syllabus
2. Fuel cycle, uranium fission, radwaste.
3. Genesis of neutrons, neutrons absrorption and scatering, nuclear reactions recovery, critical dimensions of
reproducing system.
4. Nuclear reactors classification, nuclear reactors types, neutrons diffusion in core.
5. Moderation of neutrons in core, critical dimensions and composition of reactor core calculation.
6. Thermal and hydraulic calculation. Measuring system in reactor.
7. Thermal and technological schemes of nuclear power stations.
8. Technological schemes of auxiliary system connected to system of main reactor cooling. Dispositional arrangemet
of nuclear power station. Safety of nuclear power station and its legislative ensurance.
9. Nuclear power station safety and technical devices of its ensurance. Defence of power station surroundings.
Nuclear power station heat cycle. Fuel consumption. Iradiated fuel manipulation.
10. Storage pools, spent fuel buffer stock. Pipes and valves for nuclear equipment.
11. Pumps, heat exchangers, steam generators, staem turbines and reheaters.
12. Nuclear power stations with improved passive safety (AP 600, VVER 640, EPR)
13. Radwastes and state task. Spant fuel manipulation procedures. Spent fuel separation and transmutation, energy
producing. ADDT transmutor.
Exercise
Teacher / Lecturer
Syllabus
2. Nuclear fuel problems. Spent fuel problems.
3. Criticality calculations according to the equation of 4 coefficients.
4. Specifics of individual nuclear reactors types.
5. Calculation of critical dimensions and composition of reactor core.
6. Thermal and hydraulic calculation.
7. Thermal and technological schemes of nuclear power stations.
8. Thermal and technological schemes of nuclear power stations.
9. Nuclear safety, safety specifications of individual nuclear machines. 10. Calculation of basic parameters of nuclear power plant cycle.
11. Heat exchangers in nuclear energetics, calculation.
12. Nuclear spent fuel treatment.
13. Spent fuel transmutation, ADDT transmutor.