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G. BEREZNAI
(University of Ontario, Institute of Technology, Oshawa, Canada)
CANDU-9 Systems and Overall Unit
CANDU-9 Systems and Overall Unit
CANDU-9 Reactor Systems and Regulation
CANDU-9 Reactor Systems and Regulation
CANDU-9 Heat Transport System and Control
CANDU-9 Heat Transport System and Control
CANDU-9 Balance of Plant Systems and Control
CANDU-9 Balance of Plant Systems and Control
Advanced CANDU Reactor (ACR) Reactor Systems and Regulation
Advanced CANDU Reactor (ACR) Reactor Systems and Regulation
Advanced CANDU Reactor (ACR) Heat Transport and ECI
Advanced CANDU Reactor (ACR) Heat Transport and ECI
J. CLEVELAND
(IAEA, Vienna, Austria)
Overview of Global Development of Advanced Nuclear Power Plants
N. TIKHONOV
(Moscow Engineering & Physics Institute, Russian Federation)
Overview of the WWER simulator. Reactor system equipment. Constructional and physical characteristics of the core. Safe operation limits.
Overview of the WWER simulator (continued). Goals, scope of simulation, distinctive features and capabilities. User interface.
WWER simulator exercises. Stationary processes, fuel burnup, determination of the core major neutron-physics characteristics.
WWER simulator exercises. Reactor trip, xenon oscillations and recovery to rated power.
ENICAD - Simulator Shell and Code Generators
WWER Simulator. Reactor startup from hot standby
W.K. LAM
(Cassiopeia Technologies Inc., Toronto, Canada)
Pressurized Water Reactor (PWR) System Description and Characteristics;
Presentation of PWR Core Model and Demonstrate Reactor Controls (Dark & Gray Rods) using the PWR Simulator.
PWR Simulator Exercises - (a) Hands-on interaction with the simulator – freeze, run, IC, malfunctions, etc. (b) Review each major PWR subsystem, (c) Practice power maneuver
PWR Simulator Exercises - Tips and Recovery
PWR Simulator Exercises - Malfunctions
PWR Simulator Exercises - Malfunctions
Boiling Water Reactor (BWR) System Description and Characteristics; ABWR (GE Design) Overview - a representative candidate for the new generation of advanced BWR; Demonstrate Simulation Effects using
Presentation of BWR Steady State Model and Dynamic Model as the mathematical basis for the Simulator
BWR Steady State Mass & Energy Model Exercise – to find out how the coolant quality plays an important role in reactor power control
ABWR Simulator Exercises – Review major BWR Subsystems; Practice Power Maneuver
ABWR Simulator Exercises - Trips and Recovery
ABWR Simulator Exercises - Malfunctions
Exploring the Benefits of Classroom Simulator for Education.
Presentation of the Modular Modeling Approach in modeling Reactor Point Kinetics, Reactivity Feedback Effects; Simple Overall Plant Model
Using CASSIM™? S/W and following presentation examples, participants will develop Reactor Point Kinetic Model, linked with Reactor Feedback Effects Model; run trends and debug the integrated model.
As continuation of the modeling exercise, the participants will complete the simple Overall PWR Plant model, using CASSIM™? S/W and following the presentation examples.
NPP Accident Simulation: Theory & Demonstration using CASSIM™?
NPP Accident Simulation: Theory & Demonstration using CASSIM™? (continued). Concluding in the Eklund Informatic Lab.
Organizers
J. Cleveland and A. Pryakhin; Local Organiser: C. Tuniz