Javascript must be enabled to continue!
Multi-physics coupling simulation in virtual reactors
View through CrossRef
Nuclear power stations involve a range of complex and interacting multi-physical processes. With the rapid development of high-performance computing technology, accurate multi-physics simulation in virtual reactors has drawn more and more attention in industry and academia. Great efforts have been made toward the simulation of multi-physics coupling processes in reactors. The interpretations of many terms that describe multi-physics simulation vary in different literatures. We organize and discuss some important terms relevant to the multi-physics coupling simulation. We compare the three most frequently used multi-physics coupling strategies: the operator splitting, Picard iteration, and Jacobian-Free Newton–Krylov methods. We summarize three main viewpoints on the degree of coupling of the three strategies (loose, tight, or full coupling). Then we review the coupling software and corresponding coupling strategies in some representative virtual reactor projects. We present the research focuses of Spider coupling platform. The Spider is developed in the China Virtual Reactor (CVR) project. The multi-physics phenomena are considered in the CVR project from three scales: fuel scale, reactor core scale, and system scale. Both loose and tight coupling strategies are supported in the Spider platform.
SAGE Publications
Title: Multi-physics coupling simulation in virtual reactors
Description:
Nuclear power stations involve a range of complex and interacting multi-physical processes.
With the rapid development of high-performance computing technology, accurate multi-physics simulation in virtual reactors has drawn more and more attention in industry and academia.
Great efforts have been made toward the simulation of multi-physics coupling processes in reactors.
The interpretations of many terms that describe multi-physics simulation vary in different literatures.
We organize and discuss some important terms relevant to the multi-physics coupling simulation.
We compare the three most frequently used multi-physics coupling strategies: the operator splitting, Picard iteration, and Jacobian-Free Newton–Krylov methods.
We summarize three main viewpoints on the degree of coupling of the three strategies (loose, tight, or full coupling).
Then we review the coupling software and corresponding coupling strategies in some representative virtual reactor projects.
We present the research focuses of Spider coupling platform.
The Spider is developed in the China Virtual Reactor (CVR) project.
The multi-physics phenomena are considered in the CVR project from three scales: fuel scale, reactor core scale, and system scale.
Both loose and tight coupling strategies are supported in the Spider platform.
Related Results
The interaction between neural populations: Additive versus diffusive coupling
The interaction between neural populations: Additive versus diffusive coupling
AbstractModels of networks of populations of neurons commonly assume that the interactions between neural populations are via additive or diffusive coupling. When using the additiv...
Comprehensive Comparison and Analysis for Fast Reactors
Comprehensive Comparison and Analysis for Fast Reactors
Abstract
Fast reactor is the main reactor type of the fourth generation reactors. It has the advantages of good fuel breeding characteristics, strong transmutation a...
Evaluation of TH multi-scale coupling methods in BEPU analysis
Evaluation of TH multi-scale coupling methods in BEPU analysis
The combined use of thermal-hydraulics system with sub-channel codes (TH-TH coupling) in transient analysis provides an integrated tool with the capability of modelling in detail b...
Defining "Virtual Community"
Defining "Virtual Community"
The rise of the Internet has spawned the prolific use of the adjective “virtual.” Both the popular press and scholarly researchers have written about virtual work, virtual teams, v...
Defining "Virtual Community"
Defining "Virtual Community"
The rise of the Internet has spawned the prolific use of the adjective “virtual.” Both the popular press and scholarly researchers have written about virtual work, virtual teams, v...
Multi-physics simulation method for automotive motors with variable working conditions based on multi-software combination
Multi-physics simulation method for automotive motors with variable working conditions based on multi-software combination
This paper proposes a multi-physics simulation method for automotive motors under variable working conditions based on multi-software combination. The combination of finite element...
Manajemen Komunikasi Event Organizer Virtual
Manajemen Komunikasi Event Organizer Virtual
Abstact. This research is motivated by the continuity of event organizers in holding shows that cannot be done properly due to pandemic conditions and as a result they choose to be...

