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monitoring of marine structures, including vessel hulls and floating offshore wind turbines (FOWTs) using the inverse Finite Element Method (iFEM). For this project, the candidate will start by developing
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of marine structures, including vessel hulls and floating offshore wind turbines (FOWTs) using the inverse Finite Element Method (iFEM). For this project, the candidate will start by developing an iFEM code
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Candidate for an EU funded project: Innovative circular materials and design methods for the development of Floating Wind Turbine components for offshore Wind Farms of the future (Made4Wind). The PhD
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materials and design methods for the development of Floating Wind Turbine components for offshore Wind Farms of the future (Made4Wind). The PhD Candidate will be mainly working in the work package 5 (WP5
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to an obtained doctoral degree. This position will focus on research in fluid-structure interaction, laying the foundation for advanced structural analysis of floating wind turbines (FOWTs) accounting
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focus on application of probabilistic methods and structural reliability analysis to nylon mooring lines for offshore renewable energy with main focus on floating wind turbines. The objective is to