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, with expertise in dynamic/data-driven modeling, optimization, Aspen, COMSOL, or CFD b. Techno-economic analysis (TEA) & life-cycle assessment (LCA) for chemical, energy, or biomanufacturing processes
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advanced CFD (such as LES or DNS) and combustion modelling of reacting flows and combustion systems. • Develop and apply combustion chemistry, turbulence–chemistry interaction, and relevant
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computational modelling of additive manufacturing and develop high-performance GPU-based CFD solvers. Qualifications • With PhD degree • Strong research experience in developing GPU-based
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needs, the model may also be coupled with high-resolution CFD models to enable multi-scale coastal process modelling.
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hydrodynamic modelling by integrating hydrodynamic, morphological, and geotechnical model. The successful candidate will work on developing and improving CFD modelling. The research may involve observational and
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the wider Faculty of Engineering. We are keen to attract candidates with extensive experience in DEM. Experience in DEM of clays and of using YADE would both be distinct advantages. About you You will
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(CFD) models, including fluid–structure interaction (FSI) simulations where appropriate, will be developed and validated against experimental measurements. These models will be used to investigate
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• Conduct computational fluid dynamics (CFD) simulations • Conduct experiments in wind tunnels and water channels • Analyze experimental and simulation data and summarize key findings and
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for synchronized operation of multiple floating and jack-up platforms. • Develop MATLAB/Simulink models integrating hydrodynamic inputs from CFD and seakeeping analyses. • Conduct simulation studies
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across the wider Faculty of Engineering. We are keen to attract candidates with extensive experience in DEM. Experience in DEM of clays and of using YADE would both be distinct advantages. About you You