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WIZAPE
Apprentice Mode
10 Modules / ~100 pages
Wizard Mode
~25 Modules / ~400 pages

Reactor Core Design and Analysis
( 24 Modules )

Module #1
Introduction to Reactor Core Design
Overview of reactor core design principles, objectives, and challenges
Module #2
Nuclear Reactor Fundamentals
Review of nuclear reactions, neutron transport, and reactor physics
Module #3
Reactor Core Components
Overview of fuel, cladding, coolant, moderator, and reflector materials
Module #4
Core Geometry and Layout
Types of core geometries, fuel assembly design, and core layout strategies
Module #5
Neutron Transport Theory
Review of neutron transport equations, solutions, and approximations
Module #6
Reactor Core Simulation Codes
Overview of reactor core simulation codes, such as MCNP and Serpent
Module #7
Core Thermal-Hydraulics
Coolant flow, heat transfer, and temperature distributions in the core
Module #8
Core Nuclear Performance
Reactor core neutronic performance, including fuel depletion and burnup
Module #9
Reactivity Control and Feedback
Reactivity control systems, feedback mechanisms, and xenon oscillations
Module #10
Core Design Optimization
Optimization techniques for reactor core design, including genetic algorithms and sensitivity analysis
Module #11
Fuel Cycle and Depletion
Fuel cycle options, fuel depletion, and actinide management
Module #12
Core Materials and Their Properties
Properties and behavior of fuel, cladding, coolant, and moderator materials
Module #13
Reactor Core Safety Analysis
Safety analysis methods, accident scenarios, and risk assessment
Module #14
Loss of Coolant Accident (LOCA) Analysis
LOCA scenarios, coolant loss, and emergency core cooling systems
Module #15
Core Damage and Consequences
Core damage modes, radioactive release, and environmental consequences
Module #16
Reactor Core Design for Advanced Reactors
Design considerations for advanced reactor types, including SMRs and Generation IV reactors
Module #17
Code Development and Validation
Development and validation of reactor core simulation codes, including verification and validation
Module #18
Sensitivity and Uncertainty Analysis
Methods for sensitivity and uncertainty analysis in reactor core design
Module #19
Core Design for Non-Electric Applications
Reactor core design for non-electric applications, including process heat and hydrogen production
Module #20
International Nuclear Safety Standards
Overview of international nuclear safety standards and guidelines for reactor core design
Module #21
Regulatory Frameworks for Reactor Core Design
Regulatory frameworks and licensing requirements for reactor core design
Module #22
Case Studies in Reactor Core Design
Real-world examples of reactor core design, including successes and challenges
Module #23
Future Directions in Reactor Core Design
Advancements and emerging trends in reactor core design, including digital twin and AI applications
Module #24
Course Wrap-Up & Conclusion
Planning next steps in Reactor Core Design and Analysis career


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