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Field
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. The study of wave/wind structure interaction (WSI) is fundamental to the design and development of coastal, offshore and ocean engineering structures, including sea defences and emerging offshore renewable
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Renewable offshore wind energy plays a critical role on meeting net zero targets, which leads to the need for novel design and construction solutions for offshore wind structures that are subjected
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role on meeting net zero targets, which leads to the need for novel design and construction solutions for offshore wind structures that are subjected to dynamic loading conditions (wind, waves
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This study will investigate the pivotal role of wind turbine owners’ decisions and the policy alternatives aimed at increasing the integration of offshore wind energy into electricity grids. In
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Post status: Full-time – 3 Years Hours of work: 37.5 hours per week Post summary The Department of Civil, Structural and Environmental Engineering at Trinity College Dublin (TCD) are seeking a PhD
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The Department of Civil, Structural and Environmental Engineering at Trinity College Dublin (TCD) are seeking two Research Associates to work on the SEAI funded InDyCORE (Innovation in Dynamic Cables for Offshore
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are at the forefront of developing entirely new, sustainable materials, structures, and infrastructures. Applications range from offshore wind farms and bridges to road construction and railways. As a lab technician at
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Technological University of the Shannon: Midlands Midwest | Limerick, Leinster | Ireland | 28 days ago
multidisciplinary team and will acquire expertise in simulation and design of composite structures for offshore renewable energy. Duration of Project: 48 months Funding Agency: Sustainable Energy Authority of Ireland
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Increasing demand for sustainable energy production is leading to rising numbers of offshore structures for renewable energy production. At the same time, the demand for sustainable animal proteins from
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expected to demonstrate knowledge and track record in some of the following aspects: ocean wave dynamics, computational fluid dynamics, finite element analysis, fluid-structure interactions, offshore