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on accurate and efficient evaluations of the sea states and the wave loads on the wind turbine substructures. In the B-WAVE project, the wave conditions and wave loads will be analysed through a numerical
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extraction at sea, ship technology and the equipment industry, fisheries and aquaculture. We also have a strong commitment to the development of sustainable solutions for offshore renewable energy, coastal
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of marine structures exposed to waves, current and wind in the ocean environment, which is also exposed to climate changes. Among the applications of this work are environmental loads and structural response
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hydrogen production. As the access to develop new oil and gas fields may decline over the coming years, it is even more important to recover as much as possible from the existing developed fields. Here, sea
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related to the blue economy: oil and gas extraction at sea, ship technology and the equipment industry, fisheries and aquaculture. We also have a strong commitment to the development of sustainable
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), whose overall goal is to understand the mutual interactions between waves, currents and turbulence (WCT) in the uppermost layer of the ocean through experimental, numerical and theoretical research. WTC
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the capabilities of the new propulsion system attend and assist in physical experiments in world-class laboratories https://www.ntnu.edu/norwegian-ocean-technology-centre communicate your results clearly
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that can change everyday life. Department of Marine Technology We develop methods and technology related to the blue economy: oil and gas extraction at sea, ship technology and the equipment industry