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study, you will develop a model for the dynamic methane cycling in global inland waters. This model will build on our pioneering model framework and simulate the changes in cycling fluxes of major carbon
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and mechanical properties under in-situ pressure and temperature conditions; develop and apply fully-coupled thermo-hydro-mechanical models to simulate mine water flow and heat storage dynamics within
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minerals) and reverse weathering (precipitation of authigenic secondary clays and carbonate precipitation). You will conduct laboratory flow-through experiments to simulate different ambient conditions and
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access to world-class laboratories like Geolab external link and Earth Simulation Lab external link , and to excellent high-performance computing facilities. We are a lively department that hosts
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Earth Simulation Lab external link . We also have excellent High- Performance Computing facilities. The department and its facilities are located at Utrecht Science Park. Utrecht is the fourth largest
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storm surge barriers and their hinterlands. Your role will be to develop and apply long-term (until 2100) eco-geomorphological (Delft3D) models of the Dutch delta to simulate the interactions between
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external link , and the Earth Simulation Lab external link . We also have excellent High- Performance Computing facilities. The department and its facilities are located at Utrecht Science Park. Utrecht is
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will develop numerical models to simulate fluid injection-induced fracture and flow behaviour, as well as permeability evolution in fracture systems, utilising fracture networks mapped from geothermal
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of the subantarctic carbon sink as negative climate feedback. In this project, you will combine proxy-based oceanographic reconstructions in the subantarctic zone with numerical lagrangian model simulations of iceberg
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integrity to determine their suitability for hydrogen storage. You will also develop numerical models to simulate hydrogen flow dynamics within the reservoirs, and examine their impact on hydrogen containment