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pressure housings, sealing, and depth-rated design (100 m). o CFD or experimental hydrodynamics (PIV, drag testing). o Familiarity with ROS, embedded controllers, and energy
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, including aspects of buoyancy, stability, hydrodynamic loads, and behavior in the marine environment; Ability to work in a multidisciplinary team; Ability to analyze and process experimental data; Good oral
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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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) . The section engages in theoretical, experimental and numerical fluid mechanics. This includes technology for the green transition, marine hydrodynamics, hydrodynamic waves, and continuum mechanics. This project
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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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qualities Applicants must hold a master's degree or equivalent education in in fluid mechanics, theoretical physical oceanography, applied mathematics, hydrodynamics, or related fields, or must have submitted
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technology for the green transition, marine hydrodynamics, hydrodynamic waves, and continuum mechanics. This project focuses on detecting underwater acoustics using AI methodologies. Additionally, CFD
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the project: 1. Wave Stochastic Analysis and Hydrodynamics Conduct advanced stochastic analysis of wave environments to evaluate the performance of floating structures. Analyze hydrodynamic behavior of floating
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analysis of innovative concepts for co-located floating renewable energy devices, such as floating wind and floating solar systems. The work will involve dynamic response analysis (hydrodynamic and