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flows of polymer aqueous solutions with fractional time-derivative.
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## Modelling oceanic tides with FreeFEM++
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### *Mr Baptiste Loire
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## Obeservatoire de Paris
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*Abstract*:
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*Abstract*: Oceanic tides play a fundamental role in the evolutionary dynamics of some orbital systems, influencing energy dissipation significantly.
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Their detailed understanding and precise quantification provide answers ranging from the fate of an orbit to the history of a planet.
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Achieving this understanding entails a stepwise incorporation of physical parameters, while accurate quantification demands reaching
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a level of realism commensurate with the intricacies of oceanic dynamics. Starting from validating the results of the analytical models, a numerical
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method allows then the introduction of a realistic bathymetry and continentality and the possibility to add non-linear terms. This presentation showcases results
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obtained from a numerical approach using finite elements for various oceanic tides models of increasing complexity and the work in progress to take into account a non-linear drag effect.
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