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Course info
KKE / PJE
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Course description
Department/Unit / Abbreviation
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KKE
/
PJE
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Academic Year
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2023/2024
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Academic Year
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2023/2024
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Title
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Nuclear power plant operation
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Form of course completion
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Exam
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Form of course completion
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Exam
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Accredited / Credits
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Yes,
5
Cred.
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Type of completion
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Combined
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Type of completion
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Combined
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Time requirements
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Lecture
3
[Hours/Week]
Tutorial
1
[Hours/Week]
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Course credit prior to examination
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Yes
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Course credit prior to examination
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Yes
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Automatic acceptance of credit before examination
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Yes in the case of a previous evaluation 4 nebo nic.
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Included in study average
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YES
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Language of instruction
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-
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Occ/max
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Automatic acceptance of credit before examination
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Yes in the case of a previous evaluation 4 nebo nic.
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Summer semester
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0 / -
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0 / -
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0 / -
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Included in study average
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YES
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Winter semester
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2 / -
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0 / -
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1 / -
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Repeated registration
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NO
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Repeated registration
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NO
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Timetable
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Yes
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Semester taught
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Winter semester
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Semester taught
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Winter semester
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Minimum (B + C) students
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10
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Optional course |
Yes
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Optional course
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Yes
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Language of instruction
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-
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Internship duration
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0
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No. of hours of on-premise lessons |
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Evaluation scale |
1|2|3|4 |
Periodicity |
každý rok
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Evaluation scale for credit before examination |
S|N |
Periodicita upřesnění |
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Fundamental theoretical course |
No
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Fundamental course |
Yes
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Fundamental theoretical course |
No
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Evaluation scale |
1|2|3|4 |
Evaluation scale for credit before examination |
S|N |
Substituted course
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None
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Preclusive courses
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N/A
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Prerequisite courses
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N/A
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Informally recommended courses
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N/A
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Courses depending on this Course
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KEE/SNJT
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Histogram of students' grades over the years:
Graphic PNG
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XLS
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Course objectives:
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The aim of the course is to provide students with information about the controlled fission reaction block diagram of the nuclear power plant operation and guarantee tests a nuclear power facility. To introduce students to evaluate and guarantee test approach with block after a variable operating break. Another aim is to bring nuclear safety device block, control operating systems, work safety during installation and operating instructions. Provide information about the causes and locations of the most common disorders of primary and secondary devices.
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Requirements on student
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Active participation in lectures and tutorials, final test and oral exam.
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Content
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Physical description of controlled fission reaction. Schematic diagram of NPP. Guaranty operation and device testing of NPP. Evaluation of guaranty tests. NPP block start-up after operational brakes of a various duration. Security devices of NPP block. Control operational systems. Occupational safety during assembly. Cause and place of primary and secondary devices failure. Participation on NPP block start-up (if possible).
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Activities
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Fields of study
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Guarantors and lecturers
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Guarantors:
Ing. Jan Zdebor, CSc. (100%),
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Lecturer:
Ing. Josef Hejdus (50%),
Ing. Josef Hejdus (100%),
Ing. Jan Zdebor, CSc. (50%),
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Tutorial lecturer:
Doc. RNDr. Daniel Duda, Ph.D. (100%),
Ing. Josef Hejdus (100%),
Ing. Josef Hejdus (100%),
Ing. Jan Zdebor, CSc. (100%),
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Literature
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Basic:
Bečvář, Josef. Jaderné elektrárny. Vyd. 1. Praha : Státní nakladatelství technické literatury, 1978.
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Extending:
Waltar, A.E., Reynolds, A.B. Fast Breeder Reactors - Rychlé množivé reaktory. Pergamon Press, 1986.
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Extending:
Becker, E.W. Uranium Enrichment - Obohacování uranu. Springer-Verlag Berlin, 1979.
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Recommended:
Klik, František; Daliba, Jaroslav. Jaderná energetika. Vyd. 2. Praha : Vydavatelství ČVUT, 2002. ISBN 80-01-02550-0.
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Recommended:
Dubšek, František. Jaderné reaktory. Vyd. 1. Brno : PC-DIR, 1995. ISBN 80-214-0715-8.
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Recommended:
Ronald Allen Knief. Nuclear Engineering. 2008. ISBN 978-0-89448-458-2.
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Recommended:
Hejzlar, Radko. Stroje a zařízení jaderných elektráren - Díl 1. ČVUT Praha, 2000.
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Recommended:
Hejzlar, Radko. Stroje a zařízení jaderných elektráren - Díl 2. ČVUT Praha, 2000.
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Recommended:
Heřmanský, Bedřich. Termomechanika jaderných reaktorů. Vyd. 1. Praha : Academia, 1986.
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On-line library catalogues
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Time requirements
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All forms of study
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Activities
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Time requirements for activity [h]
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Contact hours
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52
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Preparation for an examination (30-60)
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50
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Preparation for comprehensive test (10-40)
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28
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Total
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130
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Prerequisites
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Knowledge - students are expected to possess the following knowledge before the course commences to finish it successfully: |
využívat samostatně teoretické znalosti z oblasti mechaniky, elektrotechniky, pružnosti a pevnosti, nauky o materiálu a částí strojů |
využívat samostatně potřebné teoretické znalosti z oboru jaderná energetika |
umět samostatně využívat teoretické znalosti z oblasti termomechaniky |
Skills - students are expected to possess the following skills before the course commences to finish it successfully: |
používat výpočtových možností kancelářských programů |
používat grafické znázornění základních fyzikálních a matematických závislostí |
používat různé druhy technických schémat (např. regulační, elektrické, teplotechnické) |
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Learning outcomes
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Knowledge - knowledge resulting from the course: |
popsat a vysvětlit blokové schéma jaderné elektrárny |
komplexně popsat podmínky provozu jaderné elektrárny |
popsat a vysvětlit garanční provoz jaderné elektrárny |
popsat a vysvětlit najíždění s blokem jaderné elektrárny po různě dlouhé provozní přestávce |
Skills - skills resulting from the course: |
analyzovat bezpečnost provozu jaderné elektrárny |
aplikovat provozní předpisy jaderné elektrárny |
analyzovat příčiny a místa nejčastějších poruch primárních i sekundárních zařízení jaderné elektrárny |
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Assessment methods
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Knowledge - knowledge achieved by taking this course are verified by the following means: |
Oral exam |
Test |
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Teaching methods
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Knowledge - the following training methods are used to achieve the required knowledge: |
Lecture |
Practicum |
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