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dc.contributor.authorHarnois, Violette
dc.date.accessioned2015-05-13T08:35:24Z
dc.date.issued2014-10-01
dc.description.abstractMarine Renewable Energy (MRE) is a promising source of energy for the future. However, it is still under development and many challenges need to be overcome to develop competitive solutions. While the design of the station keeping system of traditional offshore oil and gas structures is driven mainly by their low frequency motions, MRE devices are installed at nearshore locations and move dynamically. Because of these criteria, MRE mooring systems require novel mooring systems and associated standards. MRE mooring standards need to take into account the highly dynamic behaviour of these systems, which can lead to large mooring loads. The nature of these loads needs to be investigated to improve the confidence in mooring design and to improve cost-effectiveness. The aim of this thesis is to develop the understanding of peak mooring loads on highly dynamic mooring systems, in particular, the environmental conditions associated with the loads. In addition, preliminary research into the response of the mooring systems to environmental conditions is presented. Both field tests and tank tests have been conducted. Field tests give insight into the behaviour of a dynamic mooring system in real sea conditions. Measuring the mooring loads and the environmental conditions - wave, and current if available – for several months, a methodology has been developed to detect peak mooring loads and identify the associated environmental conditions in order to compare them with the environmental conditions recorded throughout the field tests. The principal finding is that peak mooring loads occur for sea states with large but not always the highest significant wave height HS. The understanding of the effect of tidal conditions on peak mooring loads requires further work. A tank test of a dynamic mooring system in moderate sea states has been conducted to observe the dynamic behaviour of the mooring system. Tank tests enable detailed observations of the dynamic behaviour of a system in a well controlled environment and allow the calibration of a numerical model. The model can be used to investigate separate physical parameters. The results from this thesis will assist in the development of specific standards for MRE mooring systems. These standards are essential for the evolution of the MRE industry.en_GB
dc.identifier.urihttp://hdl.handle.net/10871/17205
dc.language.isoenen_GB
dc.publisherUniversity of Exeteren_GB
dc.subjectMarine Renewable Energyen_GB
dc.subjectMREen_GB
dc.subjectmooring systemsen_GB
dc.subjectstandardsen_GB
dc.subjectpeak mooring loadsen_GB
dc.subjecthighly dynamic mooring systemsen_GB
dc.subjectfield testsen_GB
dc.subjecttank testsen_GB
dc.subjectnumerical modelen_GB
dc.subjectmooring loadsen_GB
dc.subjectenvironmental conditionsen_GB
dc.titleAnalysis of Highly Dynamic Mooring Systems: Peak Mooring Loads in Realistic Sea Conditionsen_GB
dc.typeThesis or dissertationen_GB
dc.date.available2015-05-13T08:35:24Z
dc.contributor.advisorJohanning, Lars
dc.contributor.advisorThies, Philipp
dc.publisher.departmentCollege of Engineering, Mathematics and Physical Sciencesen_GB
dc.type.degreetitlePhD in Renewable Energyen_GB
dc.type.qualificationlevelDoctoralen_GB
dc.type.qualificationnamePhDen_GB


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