Verlagslink DOI: 10.51560/ofj.v4.141
10.48550/arXiv.2307.04104
Titel: lcs4Foam : an OpenFOAM function object to compute Lagrangian coherent structures
Sprache: Englisch
Autorenschaft: Habes, Constantin 
von Kameke, Alexandra  
Fadeli, Mohammed Elwardi 
Marschall, Holger 
Schlagwörter: Physics - Fluid Dynamics; Postprocessing; Lagrangian Coherent Structures
Erscheinungsdatum: 19-Nov-2024
Verlag: OpenCFD Ltd, on behalf of the OpenFOAM Governance
Zeitschrift oder Schriftenreihe: OpenFOAM® journal 
Zeitschriftenband: 4
Anfangsseite: 118
Endseite: 131
Zusammenfassung: 
To facilitate the understanding and to quantitatively assess the material transport in fluids, a modern characterisation method has emerged in fluid dynamics in the last decades that is based on dynamical systems theory. It allows to examine the most influential material lines which are called Lagrangian Coherent Structures (LCS) and order the material transport into dynamically distinct regions at large scales which resist diffusion or mixing. LCS reveal the robust skeleton of material surfaces and are essential to assess material transport in time-dependent flows quantitatively. Candidates of LCS can be estimated and visualised from finite-time stretching and folding fields by calculating the Finite-Time Lyapunov Exponents (FTLE).

In this contribution, we provide a function object to compute FTLE during CFD simulation by coupling OpenFOAM to the third-party library libcfd2lcs. This enables the OpenFOAM community to assess the geometry of the material transport in any flow quantitatively on-the-fly using virtually any OpenFOAM flow solver.
URI: https://hdl.handle.net/20.500.12738/16532
ISSN: 2753-8168
Begutachtungsstatus: Diese Version hat ein Peer-Review-Verfahren durchlaufen (Peer Review)
Einrichtung: Heinrich-Blasius-Institut für Physikalische Technologien 
Department Maschinenbau und Produktion 
Fakultät Technik und Informatik 
Dokumenttyp: Zeitschriftenbeitrag
Hinweise zur Quelle: Preprint: https://doi.org/10.48550/arXiv.2307.04104. Verlagsversion: https://doi.org/10.51560/ofj.v4.141.
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