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Dune growth modelling at the Sand Engine: coupling DFlow FM with AeoLiS

Research objective:

Develop an integrated process-based morphodynamic model including both hydrodynamics and bed level updates (DFlow FM), and aeolian sediment transport (AeoLiS) to explain the dune growth variability and lagoon evolution at the Sand Engine on a time scale of 1-3 years.

 

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Thesis title

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Info:

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Metadata list
|| Name | <name>Rufus Velhorst ||
|| Email | <name@Deltaresrufus.velhorst@Deltares.nl>nl ||
|| Room | <roomTetra >2b|
|| Software package | <software>DFlow FM, AeoLiS |
|| Start Date | 01-07-2016 <date>|
|| Specialisation Programme | <programme>MSc Civil Engineering, track hydraulic engineering, coastal engineering|
|| Deltares supervisor | <supervisor> Arjen Luijendijk, Bas Hoonhout |
|| TU Delft supervisor | <supervisor>Arjen Luijendijk |