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CoronelBuendia

PROFILE

Coronelbuendia

Matti Coleman developed advanced simulation and modeling features for the Fusion-Power-Plant-Framework/bluemira and ukaea/PROCESS repositories, focusing on fusion reactor design. He built a discrete coil shape calculator and integrated iterative magnetostatic solvers using Python and scientific computing techniques, enabling more accurate and efficient TF coil modeling. Matti enhanced neutronics output calculations and implemented DOLFINx-based 2D mesh visualization, improving data analysis and validation workflows. For ukaea/PROCESS, he delivered a detailed quench protection current density model, incorporating material science and numerical integration for copper and Nb3Sn. His work demonstrated depth in CAD, finite element methods, and robust documentation and testing practices.

Overall Statistics

Feature vs Bugs

100%Features

Repository Contributions

4Total
Bugs
0
Commits
4
Features
4
Lines of code
1,980
Activity Months4

Work History

July 2025

1 Commits • 1 Features

Jul 1, 2025

July 2025 monthly summary for ukaea/PROCESS: Delivered a detailed TF Coil Quench Protection System – Detailed Current Density Model, introducing advanced material property calculations for copper and Nb3Sn, accounting for temperature, magnetic field, residual resistance ratio, and neutron fluence. Updated documentation, added new input variables, and implemented comprehensive unit tests to validate accuracy and robustness. This work improves quench protection reliability, informs design decisions, and strengthens safety margins for TF coil performance.

June 2025

1 Commits • 1 Features

Jun 1, 2025

June 2025: Implemented DOLFINx-integrated plotting for 2D meshes and equilibria, refactored plotting utilities, and stabilized boundary equilibrium calculations. Enhanced tests, tolerances, and plot labels to improve reliability and clarity for simulation visualization and validation.

May 2025

1 Commits • 1 Features

May 1, 2025

May 2025 performance summary for bluemira: Delivered enhanced neutronics output calculations for blanket, divertor, and vacuum vessel power, with a refactored power loading function to support new outputs and improved data extraction from simulations. Added clear docstrings and documentation to support maintainability and onboarding of future features. No major bugs reported this month.

April 2025

1 Commits • 1 Features

Apr 1, 2025

Summary for 2025-04: Delivered a new discrete coil shape calculator for TF coils in Fusion-Power-Plant-Framework/bluemira, introducing PrincetonDDiscrete, refactoring calculations, integrating with an iterative magnetostatic solver, and updating docs and examples. This work enables constant-tension TF coil shapes with a finite coil count, reducing design iteration time and improving calculation accuracy. The commit b99c01921e9f11616e660c30f915ad1a9d0ddcee implements the Constant tension TF coil shape procedure (#3640).

Activity

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Quality Metrics

Correctness87.6%
Maintainability85.0%
Architecture87.6%
Performance65.0%
AI Usage20.0%

Skills & Technologies

Programming Languages

FortranPython

Technical Skills

CADData AnalysisData VisualizationFinite Element MethodFull Stack DevelopmentGeometryMagnetostaticsMaterial ScienceMesh ProcessingNeutronics SimulationNumerical IntegrationNumerical MethodsPhysics ModelingPythonScientific Computing

Repositories Contributed To

2 repos

Overview of all repositories you've contributed to across your timeline

Fusion-Power-Plant-Framework/bluemira

Apr 2025 Jun 2025
3 Months active

Languages Used

Python

Technical Skills

CADGeometryMagnetostaticsNumerical MethodsPythonScientific Computing

ukaea/PROCESS

Jul 2025 Jul 2025
1 Month active

Languages Used

FortranPython

Technical Skills

Full Stack DevelopmentMaterial ScienceNumerical IntegrationPhysics ModelingSuperconducting Magnet Design

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