Objectives: This PhD aims at understanding how miscible liquids with different viscosities mix.
Read MoreObjectives: Understand the mixing efficiency in Oceans through the interplay between stratification and wave stirring.
Read MoreObjectives: Objectives: Frame the lamellar approach to the description of mixing into granular systems.
Read MoreObjectives: Characterize the role of interface dynamics and interfacial mass transport in mixing and stirring at the pore scale. Determine the impact of mixing on multicomponent fluid mixtures in porous media.
Read MoreObjectives: Quantify the impact of the complex pore structures upon fluid stretching laws and reactive mixing.
Read MoreObjectives: Characterize mixing in a soft-mixer in order to maximize transport while minimizing shear.
Read MoreObjectives: Link medium heterogeneity to flow deformation and mixing; derive regional scale dispersive mixing model.
Read MoreObjectives: Quantify the effect of heterogeneity on stirring and mixing of fluids under convective instabilities
Read MoreObjectives: Identify and characterize mineral precipitation patterns linked to groundwater evaporation in arid environments and their spatial and temporal evolution using reactive transport modelling techniques.
Read MoreObjectives: Understand the impact of turbulent mixing of clear air with humid air on the broadening of the cloud droplet size distribution and thus on the initialization of rain formation
Read MoreObjectives: Theoretical and experimental study of the impact of advective mixing on the yield of the reaction A+B->C.
Read MoreObjectives: Analyze theoretically how chemical reactions can actively influence mixing by modifying, creating or suppress- ing a hydrodynamic instability at the interface between two fluids
Read MoreObjectives: Attack the problem of olfactory navigation building upon the recent successful application of Reinforcement Learning to bird soaring in turbulent environments
Read MoreObjectives: Understand and model the spatial patterns, growth dynamics and competition of bacteria in heterogeneous scalar fields composed of electron donors and acceptors originating from different sources
Read MoreObjectives: Define the chemotactic strategy in fragmented/intermittent concentration fields and its impact on bacterial resi- dence time distribution in porous media
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