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state-of-the-art experimental and computational models for solving water resource problems worldwide. CHL research and development addresses water resource and navigation challenges in a variety of
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using HCC models induced via hydrodynamic gene transfer. You will be selecting and adapting experimental protocols, analysing and presenting scientific data, contributing to publications and research
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development of hydrodynamic and water quality models. Experience in bacteria/pathogens modelling is preferred. In addition to the above, the Research Fellow is expected to contribute actively in writing reports
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environments. Ability to manage research tasks and timelines independently. Preferred Qualifications: Experience with coupled hydrodynamic, hydraulic, or sediment transport modeling. Experience with numerical
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environments to evaluate the performance of floating structures. Analyze hydrodynamic behavior of floating breakwaters under varied sea conditions. 2. CFD and Finite Element Modeling Perform Computational Fluid
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to test the performance of flexible seawall in flume test. Perform numerical study of the model test. Analyze and interpret data to make informed recommendations for costal protection system design and
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and conducting laboratory and field experiments. Experience with numerical and computational modeling of water and sediment systems. Experience with coupled hydrologic, hydrodynamic, hydraulic
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detection and Digital Elevation Model (DEM) derivation, as well as experience in mentoring undergraduate and graduate students. Experience in using numerical models, including but not limited to hydrodynamic
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. Experience with numerical and computational modeling of water and sediment systems. Experience with coupled hydrologic, hydrodynamic, hydraulic, or sediment transport modeling. Experience in federally funded
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between multiscale flows involving ocean surface waves, submesoscale current, turbulence, and wind actions. The research aims to derive a highly accurate and efficient theoretical models by extending newly