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experience or knowledge in one or more of the following areas are also a merit: Space physics Plasma physics Computational physics Applied mathematics and modelling Numerical methods for partial differential
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(doctoral researcher) to enhance our research group. The candidate will contribute to the numerical modelling, the analysis, and the interpretation of marine biogeochemistry model simulations based on NEMO
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, groundwater flow simulation, and numerical model development Basic knowledge of numerical methods for solving nonlinear systems of partial differential equations (e.g., finite volume method, finite element
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-economic assessment (TEA). This suits Chemical Engineering students. Numerical simulations may also be conducted to assess the reliability of existing modelling tools by comparing them with experimental
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to what extent and in which conditions (quasi-)distributed fibre-optic sensing can be used to estimate groundwater fluxes and result in uncertainty reduction in numerical groundwater flow models. Within
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structure dynamics including wave transmission and reflection, overtopping, mooring loading, and motion response across a range of realistic wave conditions. Numerical modelling using OpenFOAM and Delft3D
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, REddyProc) Excellent numeric and analytical problem-solving skills, including time series analysis and statistics (e.g. mixed effects modelling) Capacity to develop computer code and experience with
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couplings, this project will seek to further the fundamental understanding the wear behaviour of such components through both experimental and numerical studies. Experimental work will be carried out using a
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. Skills in numerical tools and programming are desirable (MATLAB, python, C++ etc). Any experiences with engineering design, structural/aerodynamic/aeroelasticity modelling, manufacturing/assembly process
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datasets (e.g. ground-based radar measurements and weather station data) Contribute to the development and application of numerical models Assess uncertainties for future sea-level projections Publish