Idaho National Laboratory Research Projects
- 64 followers
- Idaho Falls, ID, USA
- https://inl.gov/
- td@inl.gov
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- GBOpt Public
GBOpt is a Python package for creating, manipulating, and optimizing bicrystal grain boundary structures through configurable global optimization workflows. It uses a modular architecture, with separate modules for structure creation, manipulation, and optimization.
IdahoLabResearch/GBOpt’s past year of commit activity - AcCCS Public
A collection of tools and scripts used to communicate and emulate Electric Vehicle Communication Controllers (EVCC) and Supply Equipment Communication Controllers (SECC).
IdahoLabResearch/AcCCS’s past year of commit activity - MOUSE Public
MOUSE is a tool for estimating microreactor costs by integrating design calculations and economic analysis. It evaluates the impact of technological changes and economic parameters on microreactor design and costs.
IdahoLabResearch/MOUSE’s past year of commit activity - ELSA Public
ELSA is a Python-based utility suite built on the OpenMC API that streamlines the creation of materials, regions, and geometries for nuclear simulations. It enables modular, reusable submodels and efficient generation of complex 3D parametric geometries for reactor and radiation analysis.
IdahoLabResearch/ELSA’s past year of commit activity - EXPy Public
EXI for Python (EXPy) is a pure Python library for integrating the LF Energy EVerest EXI libraries into new Python coded projects. EXPy provides an integration and abstraction layer into the C/C++ EXI implementation from EVerest.
IdahoLabResearch/EXPy’s past year of commit activity - REBORN Public
REBORN optimizes reverse logistics networks for EV battery reuse, repurposing, and recycling. It integrates geographic, economic, and facility data to identify cost-effective collection and processing locations at national to county scales.
IdahoLabResearch/REBORN’s past year of commit activity - TRISO-ATOPS Public
This code models how radioactive materials move out of TRISO nuclear fuel in a gas reactor. It tracks how these materials spread during normal use and accidents. The results help estimate radiation release and assess safety risks to workers and the public.
IdahoLabResearch/TRISO-ATOPS’s past year of commit activity - HBMIN-GP Public
This code performs Bayesian calibration of nuclear-graphite property models using hierarchical data integration and the Kennedy–O’Hagan framework to quantify model inadequacy and experimental variability.
IdahoLabResearch/HBMIN-GP’s past year of commit activity
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