QUANTIFYING
THE HORN'S
ENERGY TRANSITION.
Rigorous, data-driven engineering and economic analysis of renewable energy feasibility in the Somali Indian Ocean coastline. Independent research for developers, academia, and policy architects.

Lead Analyst
Chem. Eng. // Simulation & Modeling
01. The Academic & Engineering Profile
A highly analytical Chemical Engineering graduate from Bolu Abant İzzet Baysal University (BAIBU), targeting elite Master of Science programs at METU and Koç University. An active researcher with experience at the NÜRDAM research center—specializing in data processing pipelines—and holding an upcoming placement at the LIP laboratory in Portugal.
Expertise bridges heavy process engineering and software development. Execution of advanced computational fluid dynamics (CFD) and thermodynamic simulations utilizes OpenFOAM, HOMER Pro, DWSIM, and COMSOL. Modern web architectures (Next.js, Python, Firebase) are leveraged to build proprietary data pipelines. Supported by high-level English proficiency (TOEFL iBT: 100).
02. The Role & Persona
Independent Energy Systems Analyst & Technical Founder.
This is not climate activism; this is hardcore engineering. The primary objective is to act as the critical bridge between complex thermodynamic/economic simulation data and the real-world deployment of renewable infrastructure in the Horn of Africa.
03. The Mission & Thesis
To mathematically prove that integrating wind power and battery storage along the 3,000km Somali coastline is a highly profitable economic necessity designed to displace the region's cripplingly expensive diesel baseload ($0.50–$1.00/kWh).
The Somali Energy Desk serves as a live, sophisticated portfolio proving the capacity to execute end-to-end research—from OpenFOAM micro-siting to Levelized Cost of Energy (LCOE) calculations. Over time, this digital asset scales to support international energy developers, NGOs, and infrastructure funds looking to enter the East African market.