Hi there,
I am Priya Sakthi

Renewable Energy Specialist

I'm a highly motivated and results-driven mechanical engineer with a passion for sustainable energy solutions.

My background spans project management, research and development, and design engineering, allowing me to approach challenges with a holistic perspective. I thrive in collaborative environments where I can leverage my strong analytical and problem-solving skills to contribute to innovative projects.

I'm particularly drawn to the dynamic field of renewable energy and dedicated to applying my expertise to advance the transition towards a greener future. I'm eager to connect with organizations and individuals who share my commitment to environmental responsibility and technological advancement.

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Renewable Energy Systems 90%
Project Management 75%
Engineering Design 80%
Communication & Collaboration 70%

Services

Renewable Energy Project Consulting

I provide expert analysis and guidance on renewable energy projects, from feasibility studies to implementation and optimization.

Engineering Design and Analysis

I offer comprehensive design and analysis services using SolidWorks and AutoCAD software.

Technical Report Writing and Grant Proposals

I can help you communicate your research effectively through clear and concise technical reports.

Projects

Pre-Feasibility Study for Hydrogen Production in Newfoundland and Labrador

Conducted a comprehensive pre-feasibility study to assess the potential for hydrogen production, storage, and distribution in Newfoundland and Labrador

Utilized various analytical tools and models to evaluate the technical and economic feasibility of different hydrogen production pathways

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Microgrid Design and Optimization for Local Communities

Led the development and optimization of microgrid systems for remote communities in Newfoundland and Labrador

Integrated renewable energy sources such as wind, solar, and hydropower to create reliable and sustainable power solutions

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Numerical Study of Turbulent Flow Around Tidal Turbine Foundations

Investigated the hydrodynamic forces acting on submerged tidal turbine foundations using computational fluid dynamics (CFD) analysis in ANSYS.

Optimized foundation designs to enhance energy efficiency and minimize operational risks associated with turbulent flow conditions

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