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-electro-catalytic (PEC) processes. In particular, it proposes to integrate within the CatalyticFoam multiscale modeling framework the multiphase fluid dynamic description, light transport and its
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, experience with Discrete Element Method or similar simulation software, and knowledge in Computational Fluid Dynamics. Additional experience in process control systems, industrial optimisation, and technology
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research in experimental and computational fluid mechanics, hydrology, and earth-surface dynamics. For over 80 years, our innovative and adaptable facilities have attracted trailblazers, problem solvers, and
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, and physical therapy are also on site. Learn more about SHCC here https://shcc.ufl.edu/ About the University of Florida UF is one of the nation’s top universities and a dynamic and rewarding place to
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aerospace engineering will be considered. Research areas of particular interest include, but are not limited to: • Aerodynamics, fluid dynamics, and aeroacoustics; • Aerospace structures, materials, and
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Institute of Physics that focuses on complex fluids and soft mesoscopic materials, both experimentally and computationally. There are strong links with soft condensed‑matter theory and computational chemistry
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) systems. Proficiency in MATLAB, Python, and LabVIEW programming languages is essential. Demonstrated research experience with a strong record of peer-reviewed publications in fluid dynamics, turbulence, air
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engineering, physics, atmospheric sciences, or a closely related field. - Strong publication record and demonstrated experience in computational fluid dynamics, turbulence modeling, and wind energy
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eólicas flotantes. Laboratory experiments and Computational Fluid Dynamics simulations—particularly using the Smoothed Particle Hydrodynamics (SPH) numerical technique—of the sloshing phenomena occurring
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-structure interaction (FSI) with focus on the fluid mechanics. We couple computational fluid dynamics (CFD) to a structural solver and/or a controller for the detailed simulation of a machine. We develop