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Field
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addresses nonlinear wave input, second-order drift forcing and higher-order platform and mooring response through analytical and computational hydrodynamics, BEM calculations and reduced-order modelling
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their surrounding environment through complex aerodynamic or hydrodynamic interactions. These interactions are highly nonlinear and depend on the robot geometry, local flow conditions, turbulence, and external
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Despite significant advances in numerical techniques and computing hardware, the high computational cost of large-scale 3D computational fluid dynamics (CFD) modelling remains a major challenge. A
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to advance nearshore hydrodynamic modelling by integrating data-driven and physics-based approaches for simulating wave propagation, wave transformation, and wave–current interaction from deep water to shallow
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of salinity data collected during the field surveys and through the monitoring stations; Calibration and validation of analytical and numerical hydrodynamic models based on the collected data. The models have
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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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; developing hydrodynamical simulations of stellar interactions with massive black holes and connecting them with stellar-evolution calculations; modelling the gravitational-wave/electromagnetic signals of star
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include: · Developing simplified 0D thermodynamic and hydrodynamic models for preliminary injector design and sensitivity analysis; · Developing advanced multiphase and multi-species models and performing
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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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of the Marine Hydrodynamics Laboratory with its large physical modeling basin which serves as a vital resource. Responsibilities* This position will provide administrative support for the Center for Naval