Hugh Dougherty
Mechanical Engineer @ Yamaha Motor Corporation, USA
About
I’m an engineer specializing in marine systems, hydrodynamics, and product development. My work bridges design, analysis, and testing, turning early concepts into reliable, high-performing products through data-driven engineering and collaboration.I’m passionate about building tools and processes that improve decision-making and accelerate innovation. Whether modeling performance, refining test methods, or coordinating across teams, I focus on connecting technical rigor with practical results.As a lifelong sailor, I bring adaptability, precision, and teamwork to every project, principles that guide my approach to complex challenges on the water and in engineering alike.
United States
Atlanta
Defense & Space
Rhino 3D, Testing, Siemens NX, Computer Vision, Simulink, Inventor, DELFTship, Psychological Research, Autonomy, Optimization, Team Management, 3D Scanning, SOLIDWORKS, MATLAB, ANSYS, PTC Mathcad, PTC Creo, AutoCAD, CorelDRAW, Microsoft Project
Experience

Mechanical Engineer
Kennesaw, GA
Sport Boat Team - Marine Innovation Center • Future Model Year Product Development -- Developing future model year products for the Yamaha Sport Boat lineup, contributing to early-stage concept definition, engineering feasibility, and downstream execution. • Wake Performance Measurement & Analysis -- Leading the quantitative measurement and post-processing of surf wake performance, developing repeatable test methods and analysis workflows to objectively evaluate boat and propulsion changes. • Repowering & Powertrain Integration (Early Development) -- Leading early development efforts for sport boat repowering initiatives to support higher-performance powertrains. >> Developed and implemented new testing procedures and engineering standards, adopted across all engineering teams at the Marine Innovation Center (MIC). >> Supporting integration of a larger-capacity fuel tank to accommodate increased power and operational requirements. • Product Feasibility & Portfolio Alignment -- Established and facilitated quarterly cross-functional reviews with Product Planning to assess the feasibility of new product concepts not tied to a specific model year, improving engineering resource allocation and prioritization. • Process Improvement & Execution Tracking -- Led implementation of Smartsheet within the Sport Boat team to improve project tracking, accountability, and schedule adherence, directly supporting on-time product delivery.

Founder
HD Racing
Cambridge, MA
Developing BoatBox, an onboard performance analytics system that ingests live navigation and instrument data, performs real-time analysis, and surfaces actionable performance insights for competitive sailing.

Mechanical Engineer
Alexandria, VA
Submarine Engineering - Advanced Capabilities • Future Submarine Concept Development (SSN(X)) -- Developed early-stage concept designs for the payload handling room of the future SSN(X) attack-class submarine, supporting novel capability integration and layout development. >> Researched and benchmarked prior submarine classes, including Seawolf-class submarine and Virginia-class submarine, to understand design decisions, operational constraints, and opportunities for increased automation and efficiency. • Capability Feasibility & Scenario Analysis Tools -- Led development of a MATLAB-based feasibility and scenario analysis tool for evaluating an advanced capability on current and future attack-class submarines. >> Designed the tool with the intent of standalone deployment for non-technical end users, enabling repeatable, rapid feasibility studies for future tasking. >> Drove internal efforts to establish licensing and infrastructure for hosting standalone MATLAB applications on a centralized web server, significantly improving deployment speed and accessibility. • Digital Twin Development – Surface Combatants (DDG(X)) -- Supported early digital twin development for the DDG(X) power plant and drive system, contributing to system-level modeling and behavior definition. >> Developed dynamic system models using MATLAB Simulink and Stateflow, collaborating directly with the U.S. Navy, General Dynamics Bath Iron Works, and HII Ingalls Shipbuilding. • Digital Twin Development – Aircraft Carrier Systems -- Supported advanced weapons elevator digital twin development for current and future aircraft carriers. >> Integrated Siemens Teamcenter and NX with MATLAB Simulink to enable hardware-in-the-loop testing, debugging, and system development, supportinga first-of-its-kind industry application.

Graduate Research Assistant
Blacksburg, Virginia, United States
Dr. Stefano Brizzolara (VT i-Ship Lab) • Led the design, verification, and validation of a prototype personal hydrofoil craft sponsored by the Office of Naval Research (ONR), owning the program from concept through physical prototype delivery. >> Developed a feasibility and scenario analysis framework in MATLAB, integrating multiple low-fidelity performance and stability models informed by high-fidelity Star-CCM+ CFD simulations. >> Executed an iterative modeling workflow between MATLAB, Star-CCM+, and SOLIDWORKS, enabling rapid design trades and convergence on a viable prototype configuration. >> Selected and sourced COTS components, manufactured the primary hydrofoil using additive manufacturing, and assembled the full prototype platform. >> Performed as-built validation by 3D scanning COTS hulls, integrating scans into the SOLIDWORKS model, and re-running Star-CCM+ verification to close the loop between design intent and physical hardware. >> Delivered a validated prototype, modeling toolchain (low- and high-fidelity), and feasibility study to ONR stakeholders on schedule, directly contributing to follow-on funding for the lab. • Supervised and mentored six undergraduate researchers, providing technical direction across modeling, fabrication, and testing activities.

Ker 50 "Temptation" Boat Captain
Newport, Rhode Island, United States
• Served as Boat Captain and Project Manager for a 50-ft carbon-fiber offshore race yacht, accountable for technical readiness, safety, and operational execution across the racing season. • Led end-to-end campaign logistics, including crew coordination, provisioning, fuel management, and sail inventory to ensure race readiness on tight schedules. • Managed and oversaw a structural refit of the keel grid and lower rudder bearing, working directly with the yacht designer to evaluate design intent, structural integrity, and execution. • Acted as the primary decision-maker on maintenance, risk, and go/no-go readiness, balancing performance objectives with safety and reliability.

Research Assistant
Cambridge, Massachusetts
• Founded and led the PavLab Summer High School Internship Program, designing the structure, recruiting ~50 applicants annually, and selecting 2 interns per cycle. • Led field operations for Project Aquaticus, supervising 8 staff members and coordinating 100+ student participants during large-scale autonomous marine robot deployments on the Charles River. • Designed and executed human–robot interaction experiments, integrating mechanical systems and autonomy software using MOOS-IvP. • Delivered a fully operational, end-to-end test environment to DARPA and ARL stakeholders, supporting live demonstrations, experimentation, and data collection.

Assistant Sailing Coach
Cambridge Rindge & Latin School
Cambridge, Massachusetts
Education

Mechanical Engineering
- 1st Place Year Long Senior Design Project: Pilot Process Feeder System - Team Lead - Teaching Assistant (TA) for MIE 313 Design of Mechanical Components - Teaching Assistant (TA) for ECE 361 Introduction to Electrical Engineering - Teaching Assistant (TA) for MIE 124 Computational Approaches to Engineering Problems
Hugh Dougherty's Contact Information
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