JOSHUA
NOUGARET
Licensed P.E. operating at the intersection of water systems, software, and sport. Project engineer turned MSCS graduate candidate, now building Driftwood Pickleball.
ENGINEERED
SOLUTIONS
Water Resources
Delivered hydrology and hydraulic design for real-world infrastructure, from drainage strategy through model-backed decision support.
Computer Science
MSCS graduate-program experience focused on scalable software, applied algorithms, and building tools engineers can actually use.
Scientific Computing
Built Python and C++ workflows for modeling, QA, and automation to move from repetitive analysis to faster technical delivery.
Brand Architecture
Launched and shaped Driftwood’s digital identity with technical storytelling, brand systems, and community-first content.
DRIFTWOOD
DRIFTWOOD
PICKLEBALL
Player-run software for grassroots events in Portland, Maine: signups, custom formats, results, and optional DUPR reporting in one workflow.
EXPLORE WEBSITE open_in_newYOUTUBE CHANNEL
Hosting livestreams from Driftwood events and local matches.
VIEW STREAMSTECHNICAL PROJECTS
FLOOD RISK ANALYZER
Python-first flood workflow that converts terrain and rainfall inputs into clear, map-ready risk insights for planning decisions.
DRIFTWOOD DASHBOARD
Full-stack league ops platform for real-time ELO, player analytics, and court scheduling in one operational dashboard.
ADRENALINE & PRECISION
SAILING
MTB
GOLF
DIRT BIKING
SKIING
SAILING
MTB
GOLF
DIRT BIKING
SKIING
SAILING
MTB
GOLF
DIRT BIKING
SKIING
CAREER TIMELINE
DRIFTWOOD PICKLEBALL
Founder & Builder
- check_circle Building a player-run software platform for grassroots events, results, and community competition.
- check_circle Running the technical and creative stack end to end, from platform ideas to community execution.
MSCS GRADUATE PROGRAM
Computer Science
Graduate study centered on software systems, applied algorithms, and practical engineering-focused computing.
PROJECT ENGINEER
Civil Water Resources
Led hydraulic and drainage design work, translating modeling and field constraints into buildable infrastructure solutions.