Founder of Morie Analytics and researcher in offshore wind. I develop engineering tools combining physics-based modelling and optimization to support integrated decision-making for energy projects and the clean energy transition.
Morie Analytics is an engineering and research consultancy developing digital decision-support tools for floating offshore wind. We combine offshore engineering, coding, numerical modelling, data analysis and optimization to support early-stage project development, helping developers and researchers evaluate floating wind concepts before detailed engineering begins. Our expertise spans integrated and holistic offshore system design, including: • floating wind farm layout optimization • shared anchoring systems • mooring and anchor engineering • seabed characterization • cable routing • installation logistics • techno-economic assessment • uncertainty analysis • engineering workflows Our software integrates engineering models with optimization algorithms to evaluate thousands of design alternatives while accounting for technical, environmental and economic constraints. We actively collaborate with the industry, research organizations and universities to accelerate innovation in floating offshore wind and digital engineering tools for the clean energy transition.
I am an offshore engineer and researcher specializing in floating offshore wind, with over 12 years of international experience in offshore engineering, numerical modelling and offshore geotechnics. My work focuses on developing engineering methods and digital tools that support early-stage decision-making by integrating multiple aspects of offshore project design into a coherent systems perspective.
As the founder of Morie Analytics, I am particularly interested in optimization-driven approaches that combine sound engineering principles with practical software solutions. My areas of expertise include floating wind farm layout optimization, mooring and anchor systems, seabed characterization, installation planning and multidisciplinary design methodologies.
I enjoy working in multidisciplinary and international collaborations, translating research into practical engineering solutions, and contributing to projects that accelerate the deployment of offshore renewable energy.
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I am interested in the following CETPartnership thematic areas:
develop the optimised, integrated European net-zero emissions energy systemdevelop a pool of zero-emission power technologies and solutions based on Renewable Energy Sourcesprovide technological cleaner solutions for hydrogen and renewable fuelsprovide technological cleaner solutions for CCS (Carbon Capture and Storage) and CCU (Carbon Capture and Utilisation)develop and demonstrate technical solutions for integrated industrial energy systems