Titelangaben
Gärttner, Stephan ; Frolkovic, Peter ; Knabner, Peter ; Ray, Nadja:
Efficiency and Accuracy of Micro‐Macro Models for Mineral Dissolution.
In: Water resources research : an AGU journal. 56 (2020) 8: e2020WR027585.
ISSN 0043-1397 ; 1944-7973
Volltext
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Link zum Volltext (externe URL): https://doi.org/10.1029/2020WR027585 |
Kurzfassung/Abstract
Micro‐macro models for dissolution processes are derived from detailed pore‐scale models applying upscaling techniques. They consist of flow and transport equations at the scale of the porous medium (macroscale). Both include averaged time‐ and space‐dependent coefficient functions (permeability, porosity, reactive surface, and effective diffusion). These are in turn explicitly computed from the time‐ and space‐dependent geometry of unit cells and by means of auxiliary cell problems defined therein (microscale). The explicit geometric structure is characterized by a level set. For its evolution, information from the transport equations solutions is taken into account (micro‐macro scales). A numerical scheme is introduced, which is capable of evaluating such complex settings. For the level‐set equation a second‐order scheme is applied, which enables us to accurately determine the dynamic reactive surface …
Weitere Angaben
Publikationsform: | Artikel |
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Sprache des Eintrags: | Englisch |
Institutionen der Universität: | Mathematisch-Geographische Fakultät > Mathematik > Mathematisches Institut für Maschinelles Lernen und Data
Science (MIDS)
Mathematisch-Geographische Fakultät > Mathematik > Lehrstuhl für Geomatik und Geomathematik |
DOI / URN / ID: | 10.1029/2020WR027585 |
Open Access: Freie Zugänglichkeit des Volltexts?: | Ja |
Peer-Review-Journal: | Ja |
Verlag: | Wiley-Blackwell |
Die Zeitschrift ist nachgewiesen in: | |
Titel an der KU entstanden: | Nein |
KU.edoc-ID: | 34986 |
Letzte Änderung: 17. Apr 2025 11:22
URL zu dieser Anzeige: https://edoc.ku.de/id/eprint/34986/