I am a wind-energy engineer using agentic coding to build practical engineering software.
I turn domain methods, technical references, and simulation workflows into transparent tools for concept design and project decisions. My work combines wind turbine loads, offshore wind, Python, and AI-assisted software development.
Agentic coding is my development method, while engineering judgment remains the authority. I use coding agents to accelerate implementation, testing, documentation, and iteration, supported by documented assumptions, references, verification, and explicit limitations.
- Wind turbine loads and dynamic analysis
- Offshore and floating wind technology
- OpenFAST simulation, automation, and post-processing
- Concept-stage support-structure design
- Agentic development of Python engineering tools
- Technical project and interface management
A Streamlit-based concept-screening tool for semi-submersible foundation scaling, hydrostatics, stability, mooring, and CAPEX optimization.
A Python and Streamlit tool for concept-stage offshore wind monopile sizing, with structural, frequency, fatigue, and buckling checks.
A lightweight preparation, execution, and post-processing workflow for OpenFAST simulation campaigns.
Engineering methods and Python tools for wind turbine scaling, retrofit studies, and early-stage concept design.
A high-level guide to developer-side project management, stage gates, stakeholders, and technical interfaces across the offshore wind project lifecycle.
- Floating wind foundation optimization
- Digital engineering for offshore wind
- Agentic engineering workflows
- AI-assisted engineering analysis
- Automated simulation and technical reporting
Agentic Coding | Python | OpenFAST | Streamlit | Wind Turbine Loads | Offshore Structures | Engineering Optimization | Project Management
The public engineering applications in this profile are intended for concept development and screening. Their documented assumptions and limitations should be reviewed before use in engineering decisions.