
Over six months, contributed to the VERSO-UVM/Wastewater-Infrastructure-Mapping repository by engineering and managing geospatial datasets to support wastewater infrastructure planning. Delivered 35 features and resolved five bugs, focusing on GeoJSON-based data integration, boundary and point-feature ingestion, and robust data scaffolding. Applied data engineering and GIS data management skills to streamline asset onboarding, automate placeholder lifecycle, and maintain repository hygiene through systematic cleanup of obsolete or temporary files. Leveraged JSON and GeoJSON to ensure accurate, region-specific visualization and reliable analytics. The work emphasized scalable data ingestion, governance, and maintainability, enabling downstream decision-making and efficient infrastructure mapping across multiple municipalities.
July 2025 performance summary for VERSO-UVM/Wastewater-Infrastructure-Mapping. Focused on expanding geospatial data coverage for wastewater infrastructure through GeoJSON ingestions, consolidating datasets, and strengthening data governance. Key results include new point-feature datasets for Marshfield, Readsboro, and Clarendon; expanded linear feature datasets for St Albans and Winhall; removal of outdated datasets (St Albans City linear features and Bethel) to reduce data drift. Administrative commits improved file uploads/placeholders and governance processes, setting the stage for faster onboarding and reliable analytics.
July 2025 performance summary for VERSO-UVM/Wastewater-Infrastructure-Mapping. Focused on expanding geospatial data coverage for wastewater infrastructure through GeoJSON ingestions, consolidating datasets, and strengthening data governance. Key results include new point-feature datasets for Marshfield, Readsboro, and Clarendon; expanded linear feature datasets for St Albans and Winhall; removal of outdated datasets (St Albans City linear features and Bethel) to reduce data drift. Administrative commits improved file uploads/placeholders and governance processes, setting the stage for faster onboarding and reliable analytics.
June 2025 monthly summary for VERSO-UVM/Wastewater-Infrastructure-Mapping. Focused on enabling bulk GeoJSON ingestion, establishing robust data scaffolding, and improving data hygiene to accelerate wastewater infrastructure mapping while maintaining data quality and processing reliability.
June 2025 monthly summary for VERSO-UVM/Wastewater-Infrastructure-Mapping. Focused on enabling bulk GeoJSON ingestion, establishing robust data scaffolding, and improving data hygiene to accelerate wastewater infrastructure mapping while maintaining data quality and processing reliability.
In May 2025, delivered critical data integration work for the Wastewater Infrastructure Mapping repo, focusing on official Orwell GeoJSON integration and Morristown service-area refresh. Implemented dataset initialization and replaced placeholder data with official GeoJSON for borders, linear features, service areas, and wastewater treatment facilities. Updated Morristown data to reflect current service area and WWTP assets. These updates enhance data accuracy, reliability, and readiness for downstream analytics and planning.
In May 2025, delivered critical data integration work for the Wastewater Infrastructure Mapping repo, focusing on official Orwell GeoJSON integration and Morristown service-area refresh. Implemented dataset initialization and replaced placeholder data with official GeoJSON for borders, linear features, service areas, and wastewater treatment facilities. Updated Morristown data to reflect current service area and WWTP assets. These updates enhance data accuracy, reliability, and readiness for downstream analytics and planning.
December 2024 monthly work summary for the VERSO-UVM/Wastewater-Infrastructure-Mapping project. Focused on expanding and stabilizing the geospatial dataset to support accurate, scalable infrastructure planning and decision-making for municipal partners. Deliverables include new town boundary data, an additional critical facility point, and cleanup of scaffolding data to prevent data leakage and confusion in downstream analyses.
December 2024 monthly work summary for the VERSO-UVM/Wastewater-Infrastructure-Mapping project. Focused on expanding and stabilizing the geospatial dataset to support accurate, scalable infrastructure planning and decision-making for municipal partners. Deliverables include new town boundary data, an additional critical facility point, and cleanup of scaffolding data to prevent data leakage and confusion in downstream analyses.
November 2024 performance highlights for VERSO-UVM/Wastewater-Infrastructure-Mapping. Delivered foundational GeoJSON data scaffolding, expanded asset ingestion, and data governance improvements that enable faster map rendering and reliable baselines across locations. Key projects include placeholder GeoJSON creation, batch asset uploads, multiple hi data re-baselining, and removal of obsolete data.
November 2024 performance highlights for VERSO-UVM/Wastewater-Infrastructure-Mapping. Delivered foundational GeoJSON data scaffolding, expanded asset ingestion, and data governance improvements that enable faster map rendering and reliable baselines across locations. Key projects include placeholder GeoJSON creation, batch asset uploads, multiple hi data re-baselining, and removal of obsolete data.
Monthly summary for 2024-10: Delivered Burke region boundary data integration and repository hygiene improvements to support accurate, region-specific visualization and maintainable data assets. The work adds a GeoJSON polygon for Burke's boundary, enabling targeted dashboards, while removing an unused placeholder file to reduce clutter and confusion. This improves data fidelity, user experience for regional mapping, and maintainability of the Wastewater Infrastructure Mapping project.
Monthly summary for 2024-10: Delivered Burke region boundary data integration and repository hygiene improvements to support accurate, region-specific visualization and maintainable data assets. The work adds a GeoJSON polygon for Burke's boundary, enabling targeted dashboards, while removing an unused placeholder file to reduce clutter and confusion. This improves data fidelity, user experience for regional mapping, and maintainability of the Wastewater Infrastructure Mapping project.

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