
Aster developed and integrated the FFHD (Fast Hydrodynamics) physics module for the amrvac/AGILE-experimental repository, enabling advanced fluid dynamics simulations with configurable Fortran code and initial test coverage. Their work emphasized modular code structure, decoupling core physics logic and refining variable handling to support future features like radiative cooling. In the following month, Aster focused on test suite cleanup and build system simplification, consolidating test maintenance and improving CI reliability by removing outdated tests and duplicate code. Utilizing Fortran, Bash, and shell scripting, Aster’s contributions established a maintainable foundation for high-performance physics simulation and robust automated testing workflows.

September 2025 monthly summary for amrvac/AGILE-experimental: Key feature delivered was the Test Suite Cleanup and Build System Simplification, consolidating test maintenance, removing an outdated TI hydro test, cleaning up duplicate code and directives, and updating the build/test infrastructure to include TI3D tests while removing standalone TI3D test setups. This work improves CI reliability and maintainability by tightening test coverage and simplifying the test harness.
September 2025 monthly summary for amrvac/AGILE-experimental: Key feature delivered was the Test Suite Cleanup and Build System Simplification, consolidating test maintenance, removing an outdated TI hydro test, cleaning up duplicate code and directives, and updating the build/test infrastructure to include TI3D tests while removing standalone TI3D test setups. This work improves CI reliability and maintainability by tightening test coverage and simplifying the test harness.
Month 2025-08 — amrvac/AGILE-experimental: Delivered the FFHD (Fast Hydrodynamics) physics module enabling advanced fluid dynamics simulations, with initial test coverage and configurability. Focus this month was on feature delivery, codebase modularization, and groundwork for radiative cooling integration. No explicit production bug fixes recorded for this module; primary value is enabling fast hydrodynamics workflows and establishing a solid foundation for future improvements.
Month 2025-08 — amrvac/AGILE-experimental: Delivered the FFHD (Fast Hydrodynamics) physics module enabling advanced fluid dynamics simulations, with initial test coverage and configurability. Focus this month was on feature delivery, codebase modularization, and groundwork for radiative cooling integration. No explicit production bug fixes recorded for this module; primary value is enabling fast hydrodynamics workflows and establishing a solid foundation for future improvements.
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