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on deep-learning methodologies to create fast emulators of large-scale geophysical models. The specific goal is to develop an emulator of the MIT general ocean circulation model (MITgcm) for a regional
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the performance of floating structures. Analyze hydrodynamic behavior of floating breakwaters under varied sea conditions. 2. CFD and Finite Element Modeling Perform Computational Fluid Dynamics (CFD) simulations
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to the islands of the Southwest Indian Ocean for co-construction workshops. Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UAR3365-JEACAM0-004/Default.aspx Work Location(s) Number of offers
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substantial intensification of the ocean heat transport, highlighting their climatic influence. However, the dynamics of submesoscale flows, and hence their representation in climate models, have not been
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involving Fluid Dynamics. Demonstrable affinity with studying the physics of the ocean and preferably with polar oceanography. Experience with numerical modelling. Excellent ability to communicate in both
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-atmosphere dynamics. We will build an AI-enabled modeling system that couples a GPU-optimized ocean model with a biogeochemical module and AI-based, kilometer-scale atmospheric forecasts. This system will
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. This project includes collaborations with Sofar Ocean https://www.sofarocean.com/ (link is external) . Additional details on the research team can be found at: https://simpsoba.su.domains/ (link is external
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Specialist, depending on qualifications and experience. The ideal candidate should possess substantial expertise in oceanic nitrogen cycles, ocean circulation, and carbon cycling in the context of climate
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the Ionian Sea. Where to apply Website http://www.ingv.it Requirements Additional Information Work Location(s) Number of offers available1Company/InstituteIstituto Nazionale di Geofisica e
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studies, and modeling work to conduct curiosity- and application-driven research on marine biogeochemistry and ecosystems in a changing environment. YOUR TASKS Conduct research on the ocean carbon cycle