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An overview of reduced order modeling techniques for safety applications
D Mandelli
, A Alfonsi
,
P Talbot
,
C Wang
, D Maljovec
, C Smith
, C Rabiti
,
J Cogliati
Nuclear Safety & Regulatory Research
Integrated Energy Technologies
Nuclear Reactor Technology
Nuclear Fuels & Materials
Research output
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Paper
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Keyphrases
Modeling Techniques
100%
Reduced Order Modeling
100%
Safety Applications
100%
RISMC
100%
Computational Cost
40%
Risk Analysis
40%
Surrogate Model
40%
Simulation Runs
40%
Reactor
20%
Multiphysics
20%
Simulation Code
20%
Advanced Simulation
20%
Thermal Hydraulic Behaviors
20%
Nuclear Power Plant
20%
Primary System
20%
Temporal Evolution
20%
Computationally Expensive
20%
Cost Simulation
20%
Secondary System
20%
Computational Power
20%
Simulation-based
20%
Data Visualization
20%
Fasting Time
20%
External Events
20%
Temporal Parts
20%
Computational Issues
20%
System Aging
20%
Multiscale Problems
20%
Brute Force Method
20%
Engineering
Computational Cost
100%
Surrogate Model
100%
Multiscale
50%
Scale Problem
50%
Thermal Hydraulics
50%
Simulation Code
50%
Simulation Result
50%
Nuclear Power Plant
50%
Primary System
50%
System Component
50%
Microsecond
50%
Secondary System
50%
Computational Power
50%
Temporal Evolution
50%
External Event
50%
Computer Science
Computational Cost
100%
Risk Analysis
100%
Simulation Code
50%
Temporal Evolution
50%
Computational Power
50%
Secondary System
50%
United States of America
50%
Mathematics
Computational Cost
100%
Risk Analysis
100%
Approximates
50%
Scale Problem
50%
Brute-Force Method
50%