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Job description Offshore wind energy is expanding rapidly, with larger turbines, higher power densities, reduced spacing between wind farms, and deployment in deeper waters. These developments
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About the role We are seeking a Postdoctoral Research Assistant to join the Oxford Turbine Research Facility group in the Department of Engineering Science. You will undertake experimental research
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postdoc, you will contribute to research and teaching within advanced modelling, optimization and design of composite and lightweight structures for applications such as wind turbine blades. Your work tasks
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-free algorithms for real-time optimization of turbine operating conditions (e.g., yaw set points). Other projects may be assigned by the supervisor depending on skills and technical needs. The successful
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propulsion applications, including rocket/hypersonic propulsion systems, gas turbine engines for unmanned aircraft systems (UAS), and sustainable aviation fuels for urban air mobility (UAM). The candidate will
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limited to, fundamental studies of reactive flow, chemical kinetics, combustion, and detonation, for a wide range of propulsion applications, including rocket/hypersonic propulsion systems, gas turbine
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for the detection, segmentation, and classification of wrinkles in composite wind turbine blades using radar imaging. You will be involved in both independent and collaborative research activities in close
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testing of model-free algorithms for real-time optimization of turbine operating conditions (e.g., yaw set points). Other projects may be assigned by the supervisor depending on skills and technical needs