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Session 1. History and Theory of Computational Fluid Dynamics
Session 2. A. Basics of Turbulence Modelling
Hands-on session 1
Session 2. B. Basics of Turbulence Modelling
Session 3. Two Phase Computational Fluid Dynamics
Hands-on session 2
Session 4. Application of CFD Codes in Nuclear Reactor Design and Safety Analysis
Hands-on Session 3
Session 5. Application of CFD Codes in Nuclear Reactor Design and Safety Analysis
Session 6. Uncertainty Quantification and Error Analysis
Hands-on Session 4
Selected Presentations from the Participants
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Displaying
40
contributions
out of
40
(Very) Short Overview of Two-phase CFD Models and Challenges for BWR Core Simulation
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Selected Presentations from the Participants
Adaptive Mesh Refinement Need in Nuclear Systems CFD analyses
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Selected Presentations from the Participants
Application of CFD codes in nuclear reactor design
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Selected Presentations from the Participants
Basics of Vector Calculus and Conservation Equations (Governing Equations in Fluid Dynamics)
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Session 1. History and Theory of Computational Fluid Dynamics
CFD Analysis of Water Cooled Reactors Severe Accident Phenomena
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Session 4. Application of CFD Codes in Nuclear Reactor Design and Safety Analysis
CFD Applications (I)
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CFD Applications (II)
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CFD Modelling Challenges for Problems Related to Nuclear Reactors
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Hands-on Session 4
Closing
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Closing
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Essay on application of CFD to assess exposure conditions during a diesel fire in emergency diesel generator building in a research reactor
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Selected Presentations from the Participants
Eulerian – Eulerian Approach
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Session 3. Two Phase Computational Fluid Dynamics
General Discussion Session
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Goodbye Video
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How the System Thermal-Hydraulics 1D code is coupled with CFD?
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Selected Presentations from the Participants
IAEA Relevant Activities
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Session 4. Application of CFD Codes in Nuclear Reactor Design and Safety Analysis
Innovative (Gen-IV) Reactors
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Session 4. Application of CFD Codes in Nuclear Reactor Design and Safety Analysis
Interface Resolving Techniques
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Session 3. Two Phase Computational Fluid Dynamics
Introduction to Course and the Expectations
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Introduction to Multi-scale Approach
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Session 5. Application of CFD Codes in Nuclear Reactor Design and Safety Analysis
Q&A Session
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Session 2. A. Basics of Turbulence Modelling
Q&A Session
Session:
Session 6. Uncertainty Quantification and Error Analysis
Q&A Session
Session:
Session 3. Two Phase Computational Fluid Dynamics
Q&A Session
Session:
Session 4. Application of CFD Codes in Nuclear Reactor Design and Safety Analysis
Quarter Sub-channel Geometry and Meshing
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Hands-on session 1
Quarter Sub-channel Modelling Options
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Hands-on session 2
Quarter Sub-channel Simulation and Post Processing
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Hands-on Session 3
RANS and URANS Modelling for Turbulent Flows
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Session 2. A. Basics of Turbulence Modelling
Review of UQ Applications
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Session 6. Uncertainty Quantification and Error Analysis
Selected Presentations from the Participants
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Solving the Equations
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Session 1. History and Theory of Computational Fluid Dynamics
Sources of Uncertainty in CFD Modelling
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Session 6. Uncertainty Quantification and Error Analysis
Turbulence Resolving Simulations: DNS, LES and Hybrid Methods
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Session 2. B. Basics of Turbulence Modelling
Uncertainty Quantification Methodology
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Session 6. Uncertainty Quantification and Error Analysis
Various Modelling Approaches in Two-Phase Flow
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Session 3. Two Phase Computational Fluid Dynamics
Water Cooled Reactor (DBAs and Operations)
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Session 4. Application of CFD Codes in Nuclear Reactor Design and Safety Analysis
WebEx Instructional Video
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Webex link opening
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Welcoming Remarks by ICTP and IAEA
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Welcoming video
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Organizers
Chirayu Batra (IAEA), Tatjana Jevremovic (IAEA), Hasib ur Rehman (IAEA), Local Organiser: Antonio Celani
Co-sponsors