OpenMC Monte Carlo Code
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Updated
Sep 22, 2026 - Python
OpenMC Monte Carlo Code
A curated list of open source projects used in nuclear science and engineering
ENRICO: Exascale Nuclear Reactor Investigative COde
Workflow and Template Toolkit for Simulation (WATTS)
The main whatisnuclear.com website
Open, cited intelligence on African nuclear & energy infrastructure programs
Nuclear Reactor Engineering in Chemical Engineering (Cortix Tech); Dr. Valmor F. de Almeida.
Energy-dependent neutron transport Monte Carlo implemented in Rust.
Realism, Nuclear War, factions, and compatibility, we're done with the schizoposting from bob.
Deep learning fault diagnosis and gradient-based root cause analysis on nuclear reactor sensor telemetry (96 parameters, 18 accident types) achieving 0.985+ AUROC on anomaly detection and 71.2% multi-class accident classification on the NPPAD dataset.
Plan, build, and manage nuclear power plants to become the greenest country on the planet (created for my global issues class)
The Nuclear Power? No Thanks logo
Analysis toolkit comparing nuclear, wind, and solar energy data with reproducible scripts and notebooks.
Optimizing Reactor Sizes for Data Center Energy Demands: Balancing Economies of Scale, Mass Production, and Availability Requirements
OpenMC-based Bayesian Optimisation of BWR fuel assembly enrichment layouts using LLM-based seeding and orchestration. The LLM is used to generate physics-informed initial designs instead of LHS and to adjust the search bounds at each BO iteration, while the main optimisation is still handled by the standard GP/Expected Improvement loop
Rafelski, J. & Steinmetz, A. J. Science Of Nuclear Fusion: Insights and Ideas. arXiv:2609.01366 [nucl-th] (2026).
A data-driven, fully-sourced case for nuclear energy — climate, safety, density, reliability, waste, cost, and a Philippines deep-dive. Built with Astro, 100/100 Lighthouse.
Holds the paper "Synergistic Spent Nuclear Fuel Dynamics Within the European Union"
This is my Bs thesis project, this Python repository features a coupled numerical model simulating the dynamic behavior of the RITM-200 SMR nuclear reactor. It integrates point neutron kinetics, core thermal-hydraulics, and a 1D steam generator to analyze operational transients like load following and control rod insertion and other features.
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