
Over two months, David developed advanced energy simulation features for the STEAM-POWER_V3 repository, focusing on integrating real-time weather and environmental data into 3D simulations. Using JavaScript, Node.js, and BabylonJS, he enhanced backend APIs to deliver wind, rain, and solar data, and refactored simulation components to dynamically model windmill and solar panel orientation. David also shifted wind energy calculations to the frontend, improving responsiveness and visualization for operators. His work included waterwheel energy modeling and UI controls, as well as bug fixes for wind direction rotation. These contributions deepened simulation accuracy and supported data-driven asset management and planning.

June 2025 monthly summary for Davidvdb1/STEAM-POWER_V3. Focused delivery across wind, water, and solar energy modeling with real-time visualization and frontend-driven calculations, resulting in clearer insights and improved performance for operators and engineers.
June 2025 monthly summary for Davidvdb1/STEAM-POWER_V3. Focused delivery across wind, water, and solar energy modeling with real-time visualization and frontend-driven calculations, resulting in clearer insights and improved performance for operators and engineers.
Month: 2025-05. Focused on delivering data-driven weather and simulation capabilities for STEAM-POWER_V3, improving energy production estimation and aligning the simulation with environmental data to support asset optimization and planning.
Month: 2025-05. Focused on delivering data-driven weather and simulation capabilities for STEAM-POWER_V3, improving energy production estimation and aligning the simulation with environmental data to support asset optimization and planning.
Overview of all repositories you've contributed to across your timeline