Course detail
Advanced Methods of Risk Management
FSI-XAMAcad. year: 2019/2020
The main kontent of the course is a review of the procedures and methods for hazard identification (sources of risk) and determination of the level of risk (estimation of the frequency of occurrence of an event). The course focuses at industrial safety (with regard to the relevant EU legislation), social risk of industrial activities, deductive and inductive methods of risk sources detection and risk estimation.
Language of instruction
Number of ECTS credits
Mode of study
Guarantor
Learning outcomes of the course unit
Prerequisites
Co-requisites
Planned learning activities and teaching methods
Assesment methods and criteria linked to learning outcomes
Course curriculum
Work placements
Aims
Specification of controlled education, way of implementation and compensation for absences
In justified cases alternative form of tuition, solution of individual semestral project.
Recommended optional programme components
Prerequisites and corequisites
Basic literature
ČSN EN 60812. Analýza způsobů a důsledků poruch (FMEA a FMECA). 2019.
ČSN EN 61025. Analýza stromu poruchových stavů (FTA). 2007.
Recommended reading
ČSN EN 62502. Techniky analýzy spolehlivosti - Analýza stromu událostí (ETA). 2011.
ČSN IEC 61882. Studie nebezpečí a provozuschopnosti (studie HAZOP) - Pokyn k použití. 2016.
Mannan, Sam, Lees’ Loss Prevention in the Process Industries. 4th Edition. Texas, USA : Elsevier 2012. ISBN 978-0-12-397189-0
Elearning
Classification of course in study plans
Type of course unit
Lecture
Teacher / Lecturer
Syllabus
2. Serious industrial accidents, couses and consequences.
3. Mathematical methods of risk estimation.
4. Sources of risk (mechanical, elektrical, chemical, biological).
5. FMEA and FMECA methods,application in risk analysis.
6. HAZOP method, detail analysis of sources of risk by HAZOP, prerequisites, possibilities of application.
7. ETA method, evaluation of initial events by ETA.
8. FTA method, evaluation of top event development by FTA.
9. Methods for analysis of reliability of human factor – analysis of tasks, HTA method.
10. Methods for analysis of reliability of human factor – evaluation of the influence of human factor on equipment.
11. Evaluation of risk analysis, metrics for estimation of risk acceptability.
12. Prevention of risks – elimination of sources, preventiv of occurrence, minimization of consequences. Approaches to risk prevention.
13. Presentation of semestral works.
Computer-assisted exercise
Teacher / Lecturer
Syllabus
2. Serious industrial world and local accidents, evaluation with ESIA and INES approaches.
3. Mathematical methods of risk description.
4. Evaluation of risk sources seriousness, handling dangerous materials.
5. Practical application of FMEA and FMECA methods.
6. Practical application of HAZOP method.
7. Practical application of ETA method.
8. Practical application of FTA method.
9. Practical application of HTA method.
10. Practical application of Human HAZOP method.
11. Evaluation of risk analysis, use of metrics for estimation of risk acceptability.
12. Approaches to risk prevention.
13. Presentation of case studies. Test.
Elearning