Status of New Models Hosted on the Virtual Test Bed (VTB) in 2024
The National Reactor Innovation Center (NRIC) mission is to support deployment of novel reactor concepts. This is achieved by providing physical and virtual spaces for building and testing various components, systems, and complete pilot plants. The Virtual Test Bed (VTB) represents the virtual counterpart to the physical test bed. It is in development in collaboration […]
Refining NEAMS MARVEL Reactor Model Accuracy
This report outlines the progress of Idaho National Laboratory (INL) in improving the fidelity of the multiphysics model of the Microreactor Applications Research Validation and Evaluation (MARVEL) reactor developed in FY24. The multiphysics model firstly developed in FY24 leverages three single-physics models coupled via the MOOSE’s MultiApps and Transfer systems. The first single-physics model, that […]
The Monolithic Heat Pipe Microreactor Reference Plant Model
This work introduces a reference plant model for a generic monolithic heat-pipe-cooled microreactor. The model will serve as a springboard to develop future evaluation models in the licensing process of similar microreactor designs at the U.S. Nuclear Regulatory Commission. This model has been developed with the Comprehensive Reactor Analysis Bundle and its specifications are based […]
Proof-of-Concept for Sensor Modeling in MOOSE for the Design of Autonomous Nuclear Reactor Control
Autonomous operation is essential for the deployment of microreactors and fission batteries, both in terrestrial and space applications. However, prototypes of microreactors and fission batteries do not exist yet, and even the design space has not been narrowed down conclusively, making the instrumentation and control system design difficult. For this reason, there is a need […]
CRAB/MELCOR Code to Code Comparison
Overview of the development of a CRAB/MELCOR workflow for mechanistic source term analysis
Advancements in Multiphysics Microdepletion Analysis of an eVinciTM-like Microreactor Leveraging OpenMC-CRAB Workflow
Nuclear microreactors (MRs) are a class of nuclear reactor technology, characterized by reduced dimensions, modular design, and reduced power output in contrast to conventional Light Water Reactors (LWRs). MRs are proposed for supplying electricity and eventual process heat to remote locations, such as military installations and disaster-affected areas. Current research work sponsored by the US […]
Data transfers for full core heterogeneous reactor high- fidelity multiphysics studies
Multiphysics simulations for nuclear reactor analysis are usually performed by resorting to operator splitting and fixed point iterations between single-physics solvers. This enables the separate solution of each physics, such as neutronics, fuel performance, and thermal hydraulics, on meshes tailored to the requirements of the respective numerical discretizations of the equations. As the equations are […]
Sodium-Cooled Fast Reactor Reference Plant Model
This report details the progress of INL on the creation of a reference plant multiphysics model for the ABTR. The model was developed within Task 13 of the NRC project “Development and Modeling Support for Advanced Non-Light Water Reactors” and is an extension of the reference plant developed in Task 4b. Several improvements were made […]
Investigation of Ring-heterogeneous Geometry Approximation for Efficient and Practical SFR Analysis
A novel geometry approximation scheme named ring-heterogeneous approximation for intermediate resolution multiphysics analysis of SFRs is presented. This approach particularly targets neutronics coupled with thermo-mechanics feedback, which dominate the passive safety of SFR designs. The ring-heterogeneous approximation casts an array of pins into volume-preserving bands of materials that constitute the pins. It allows to efficiently […]
Development of a CRAB/MELCOR Framework for Microreactor Safety Analysis
Presentation for the Microreactor Program Review on the work package that entitled “Development of a CRAB/MELCOR Framework for Microreactor Safety Analysis”