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Anthony Falls Laboratory is a globally recognized hub for pioneering research in experimental and computational fluid mechanics, hydrology, and earth-surface dynamics. For over 80 years, our innovative and
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of gas emissions. This will involve leveraging advanced gas transport models, including advection-diffusion equations, computational fluid dynamics (CFD), and Navier-Stokes equations, to provide deeper
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recognized hub for pioneering research in experimental and computational fluid mechanics, hydrology, and earth-surface dynamics. For over 80 years, our innovative and adaptable facilities have attracted
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Computational Fluid Dynamics. While traditional methods rely on a discretization of the Navier-Stokes equations at a macroscopic level, the LB method considers the fluid at a kinetic level. Capturing the dynamics
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substantially equivalent knowledge in some other way. Good oral and written proficiency in English is required. The candidate is expected to have good numerical programming skills and knowledge of fluid dynamics
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exchange between soil and water, and algorithms for oxygen and carbon dioxide transport, including organic matter dynamics (production and consumption). The model will solve equations for the dissolved phase
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the courses attended on the following topics: Analysis of Partial Differential Equations, Continuum Mechanics and Fluid Dynamics, Functional Analysis, Numerical Analysis, Probability and Stochastic Processes
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PhD Research Fellow in ML-assisted reservoir characterization/modelling for CO2 storage (ref 290702)
to better understanding of the geological heterogeneity of reservoir, seal and overburden rocks that may impact seal integrity, fluid injectivity, storage performance, plume evolution, and pressure
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for buildings and district heating systems Smart control systems for heat storage and energy systems Computational fluid dynamics and system simulation for design optimization Experience with experimental
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research methodology is coupled CFD (Computational Fluid Dynamics) and FEM (Finite Element Method) modelling and simulations. This is the only methodology allowing simulations of fluid-structure interaction