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Field
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wind farms is essential for the transition towards a sustainable energy system. However, as wind turbines are installed increasingly close together, they interact through turbulent wind wakes. These
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services and system upgrades for large-scale wind generation and electric mobility in Iceland. Position Description The position is funded through the SIF PhD Support Fund (Reykjavík University) for one year
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Electric motors and the systems they drive consume half of global electricity. These systems are typically very inefficient and contribute to a significant amount of energy wasted. By physically
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Electric motors and the systems they drive consume half of global electricity. These systems are typically very inefficient and contribute to a significant amount of energy wasted. By physically
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is essential. Indeed, the intermittent and variable nature of renewable energy sources such as wind and solar power makes storage necessary. Redox-flow batteries, which allow for the decoupling
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Large dependencies of reliable power production from offshore renewable energy systems (RES) is expected in the next decades, in particular onshore and offshore wind and solar PV. Large changes are also
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reduced maintenance demands which are key for the broader adoption of offshore wind energy. However, several challenges must be addressed, such as the machine's relatively low power density and power factor
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to interact with experts in the field (both academic and industrial) The opportunity to develop models that will assist with worldwide efforts to enhance wind-energy production The opportunity to continue your
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of (mostly) benthic marine ecosystems. This is what you'll be doing As offshore wind farms rapidly expand in the North Sea, mitigating their ecological impact on marine ecosystems is critical. The North Sea
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investigates the realisation of a Cognitive Digital Twin for the monitoring of critical infrastructure at sea (offshore wind farms, energy islands, subsea cables and pipelines). The central question is how