2023 Nuclear Plant Physical Security Exercise

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Academic unit or major
Graduate major in Nuclear Engineering
Instructor(s)
Sagara Hiroshi  Han Chi Young 
Class Format
Exercise    (Face-to-face)
Media-enhanced courses
Day/Period(Room No.)
Intensive ((未定))  
Group
-
Course number
NCL.O609
Credits
1
Academic year
2023
Offered quarter
4Q
Syllabus updated
2023/11/8
Lecture notes updated
-
Language used
English
Access Index

Course description and aims

Nuclear facility physical protection and the disaster preparedness, ther heart measures in Nuclear Security, are taught by lecture and numerical simulation exercise. Regulation of Nuclear material and radioactive substances and their physical protection, the pronciple of the structure material damage with hydro dynamics, the disaster preparedness for sabotage attack to nuclear material and radioactive substances are covered. This lecture is held on Feb 28 and 29 as intensive course.

Student learning outcomes

Nuclear facility physical protection and the disaster preparedness, Regulation of Nuclear material and radioactive substances and their physical protection, the pronciple of the structure material damage by shockwave, the disaster preparedness for sabotage attack to nuclear material and radioactive substances can be understood.

Course taught by instructors with work experience

Applicable How instructors' work experience benefits the course
Prof. Hiroshi Sagara has experience with nuclear material management and lecture the physical security with the practical exercise.

Keywords

Nuclear Securityk, Physical protection, Hydro dynamics simulation, radioactive material dispersion simulation.

Competencies that will be developed

Specialist skills Intercultural skills Communication skills Critical thinking skills Practical and/or problem-solving skills

Class flow

Lectures and exercises with numerical simulation with Ansys Autodyn and Hotspot.

Course schedule/Required learning

  Course schedule Required learning
Class 1 Lecture overview: Physical Security and Regulation Physical Security and Regulation of Nuclear plant can be explained.
Class 2 Exercise 1: Structure material hydro dynamics simulation with projectile damage Structure material hydro dynamics simulation with projectile damage can be performed.
Class 3 Exercise 2: Structure material hydro dynamics simulation with projectile damage Structure material hydro dynamics simulation with projectile damage can be performed.
Class 4 Exercise 3: Structure material hydro dynamics simulation with explosive damage Structure material hydro dynamics simulation with explosive damage can be performed.
Class 5 Exercise 4: Structure material hydro dynamics simulation with explosive damage Structure material hydro dynamics simulation with explosive damage can be performed.
Class 6 Exercise 5: Radioactive material dipersion simulation Radioactive material dipersion simulation can be performed.
Class 7 Exercise 6: Radioactive material dipersion simulation and its response Radioactive material dipersion simulation and its response can be explained.
Class 8 Overall discussion With overall discussion, wrap-up the lecture

Textbook(s)

Text and exercise materials provided by lectures.

Reference books, course materials, etc.

Text and exercise materials provided by lectures.

Assessment criteria and methods

Performance in the exercises, discussion attitude and report.

Related courses

  • NCL.N407 : Nuclear System Safety Engineering
  • NCL.O401 : Nuclear Non-proliferation and Security
  • NCL.O608 : Nuclear Plant Cyber Security Exercise
  • NCL.O610 : Nuclear Disaster Response Exercise
  • NCL.N410 : Nuclear Reactor Physics, Radiation Measurement and Nuclear Security Laboratory

Prerequisites (i.e., required knowledge, skills, courses, etc.)

It is desired to take Nuclear System Safety Engineering and Nuclear Non-proliferation and Security in advance.

Other

This lecture is held on Feb 28 and 29 as intensive course.

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