Print Email Facebook Twitter Evaluating the feasibility of shared mooring systems on a combined solar and wind farm array Title Evaluating the feasibility of shared mooring systems on a combined solar and wind farm array Author Schreuder, Camiel (TU Delft Mechanical, Maritime and Materials Engineering) Contributor Colomes, Oriol (mentor) Haenen, A. (mentor) van Driel, R. (graduation committee) Grammatikopoulos, A. (mentor) Degree granting institution Delft University of Technology Corporate name Delft University of Technology Programme Offshore and Dredging Engineering Date 2023-09-08 Abstract The demand for clean energy has led to potential cost-effective solutions for the offshore industry. One of these solutions is shared mooring systems, where floating offshore structures for renewable energy are coupled to each other. While this approach saves mooring lines and anchors, it introduces new dynamic loading compared to conventional mooring systems. This study focuses on the feasibility of using a shared mooring system to combine floating offshore wind and floating solar support structures in different configurations in a farm layout.This research uses the Volturn US-S platform to model the floating wind turbines and recreates the Tractebel Seavolt concept for the modelling of the floating solar arrays. Six configurations are simulated, undergoing irregular waves under various wave headings, load cases, and line materials. The configurations involve two wind turbines with one or more solar arrays in between them. A Quasi-dynamic model is used to identify critical cases. These cases are re-evaluated using OrcaFlex. The assessment of these configurations is done based on two Key Performance Indicators, related to line tensions and the floating support structures' displacements. During the process, polyester lines are chosen due to their favourable characteristics.The four configurations that met the Key Performance Indicators are compared to a base case of a single turbine regarding its displacements and anchored line tensions. Effective utilisation of the shared lines and limited displacements lead to a preference for the configuration with three solar arrays. Additionally, the anchored line tensions of the turbine in this configuration increase the least compared to other configurations.In summary, using a shared mooring system to combine both floating offshore wind structures and floating solar structures in a farm layout is feasible. Further research should be done on other configurations and the impact of these mooring systems on the Levelized Cost Of Energy. Additionally, wind and current loading should be incorporated in future studies. Subject Floating WindFloating SolarShared mooring To reference this document use: http://resolver.tudelft.nl/uuid:1e7cf100-6a57-4075-8dae-41494bd2e2c5 Part of collection Student theses Document type master thesis Rights © 2023 Camiel Schreuder Files PDF Thesis_CamielSchreuder.pdf 21.67 MB Close viewer /islandora/object/uuid:1e7cf100-6a57-4075-8dae-41494bd2e2c5/datastream/OBJ/view