| Titel: | A Multiscale Finite Element Framework for Coupled Continuity and Momentum Equations in the Saint-Venant System | Sprache: | Englisch | Autor*in: | Gabsi, Mouhanned | Erscheinungsdatum: | 2025 | Tag der mündlichen Prüfung: | 2025-10-06 | Zusammenfassung: | This thesis develops a multiscale finite element method for solving the one-dimensional non-linear Saint-Venant equations. The approach combines a coarse-scale treatment of the continuity equation with a fine-scale resolution of the momentum equation. A semi-Lagrangian reconstruction is used to generate time-dependent multiscale basis functions that accurately represent the evolving fine-scale dynamics and capture the mixing effect induced by the velocity field. An IMEX (Implicit-Explicit) time-stepping scheme is used to efficiently integrate the coupled system. Numerical experiments demonstrate that the proposed method delivers robust and accurate results making it a promising tool for simulating transport-dominated non-linear systems. | URL: | https://ediss.sub.uni-hamburg.de/handle/ediss/12002 | URN: | urn:nbn:de:gbv:18-ediss-132368 | Dokumenttyp: | Dissertation | Betreuer*in: | Behrens, Jörn | 
| Enthalten in den Sammlungen: | Elektronische Dissertationen und Habilitationen | 
Dateien zu dieser Ressource:
| Datei | Beschreibung | Prüfsumme | Größe | Format | |
|---|---|---|---|---|---|
| PhD thesis Mouhanned updated.pdf | 61472814a04e9006d102253ffd92399f | 1.29 MB | Adobe PDF |  Öffnen/Anzeigen | 
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