Skip to content
View yusik-kim's full-sized avatar

Block or report yusik-kim

Block user

Prevent this user from interacting with your repositories and sending you notifications. Learn more about blocking users.

You must be logged in to block users.

Maximum 250 characters. Please don’t include any personal information such as legal names or email addresses. Markdown is supported. This note will only be visible to you.
Report abuse

Contact GitHub support about this user’s behavior. Learn more about reporting abuse.

Report abuse
yusik-kim/README.md

Hi, I'm Yusik Kim

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 engineering

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.

What I work on

  • 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

Featured projects

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.

Currently exploring

  • Floating wind foundation optimization
  • Digital engineering for offshore wind
  • Agentic engineering workflows
  • AI-assisted engineering analysis
  • Automated simulation and technical reporting

Tools and domain knowledge

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.

Pinned Loading

  1. floating_wind_capex_optimizer floating_wind_capex_optimizer Public

    Concept-stage semi-submersible sizing, stability, mooring, and CAPEX optimization in Streamlit

    Python

  2. OffshoreWindDevelopment OffshoreWindDevelopment Public

    Developer-side guide to offshore wind project stages, stakeholders, and technical interfaces

    2 1

  3. openfast_prpt openfast_prpt Public

    Preparation, execution, and post-processing workflow for OpenFAST simulation campaigns

    Python 2

  4. Monopile-design Monopile-design Public

    Concept-stage offshore wind monopile sizing with structural, frequency, fatigue, and buckling checks

    Python 1

  5. wind-turbine-similarity-scaling wind-turbine-similarity-scaling Public

    Python tools and engineering methods for wind turbine scaling, retrofit studies, and concept design

    Python