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Accueil > Équipes > Équipe MEIGE > Diffusion scientifique > Séminaires internes

Séminaires internes

Des séminaires internes informels (20 min de présentation, habituellement jeudi à 13h) sont régulièrement organisés dans l’équipe.

Pour des infos ou demandes, envoyer un courriel à  : Rémi Chassagne  .

Prochains séminaires :

- 2023/01/09 Jeudi 13h00 - Thibault Leduque -

La liste plus complète des séminaires à venir et passés :

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UPDATED “GRAB AND DUMP” MODEL FOR SEDIMENT TRANSPORT UNDER ACCERELATION SKEWED WAVES

School of Civil Engineering, University of Queensland, Brisbane, Australia. Nielsen (1988) presented a simple “grab and dump” model for sediment transport over ripples, and found its performance (...)

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3D internal wave focusing

The talk presents an experimental study of internal waves emitted by a horizontally oscillating torus in a linearly stratified fluid. Internal waves are measured via precise tracking of (...)

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Convection naturelle et stockage thermique d’énergie solaire

Au cours de ce séminaire je vous présenterais le contexte du
stockage thermique d’énergie solaire et les problèmes de convection naturelle
que nous avons identifiés. Nous avons fait quelques manips (...)

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Dynamics of a Levitating Drop in a Faraday Experiment.

In a recent experiment, a drop has been introduced on top of a liquid layer which is forced to oscillate. The amplitude of the bath oscillations is close but below Faraday instability threshold. (...)

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Fine-scale modeling of the boudray layer wind field over complex topography

This study dThis study describes the adaptation of wind fields to steep and complex alpine terrain using fine-scale numerical modeling and grid nesting technique. This work is motivated by the (...)

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Lagrangian drifter modelling on an experimental rip current

When approaching the coast the propagation of random wave fields on uneven bathymetries triggers spatially non-uniform wave breaking, inducing energy dissipation gradients in the surf zone that (...)

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A two-phase model for sediment transport in sheet flow regime

A two-phase model having a μ(I) rheology for the intergranular stresses and a mixing length approach for the turbulent stresses is proposed to describe the sheet flow regime of sediment transport. (...)

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LES katabatic flow modeling on realistic configuration.

Turbulence in stable atmospheric boundary layer, and more precisely on the very close vicinity of the ground (first tens meters), is often parametrized on numerical atmospheric models commonly (...)

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Generation of mean current by nonlinear internal gravity wave reflection

In this study, we investigate the generation of a mean horizontal current observed in laboratory experiments performed at the CORIOLIS facility. We reproduced this experimental setting in (...)

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