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Combining implicit geological modeling, field surveys, and hydrogeological modeling to describe groundwater flow in a karst aquifer

Fernando M. D’Affonseca; Michael Finkel; Olaf A. Cirpka
Hydrogeology Journal · Vol. 28, Issue 8 · pp. 2779-2802 · 2020

Abstract

In three-dimensional (3-D) implicit geological modeling, the bounding surfaces between geological units are automatically constructed from lithological contact data (position and orientation) and the location and orientation of potential faults. This approach was applied to conceptualize a karst aquifer in the Middle Triassic Muschelkalk Formation in southwest Germany, using digital elevation data, geological maps, borehole logs, and geological interpretation. Dip and strike measurements as well as soil-gas surveys of mantel-borne CO 2 were conducted to verify the existence of an unmapped fault. Implicit geological modeling allowed the straightforward assessment of the geological framework and rapid updates with incoming data. Simultaneous 3-D visualizations of the sedimentary units, tectonic features, hydraulic heads, and tracer tests provided insights into the karst-system hydraulics and helped guide the formulation of the conceptual hydrogeological model. The 3-D geological model was automatically translated into a numerical single-continuum steady-state groundwater model that was calibrated to match measured hydraulic heads, spring discharge rates, and flow directions observed in tracer tests. This was possible only by introducing discrete karst conduits, which were implemented as high-conductivity features in the numerical model. The numerical groundwater flow model was applied to initially assess the risk from limestone quarrying to local water supply wells with the help of particle tracking.

Bibliographic Information

JournalHydrogeology Journal
PublisherSpringer
Publication Date2020-12-01
Publication Year2020
Volume28
Issue8
Pages2779-2802
Document TypeJournal Article
Print ISSN1431-2174
eISSN1435-0157
DOI10.1007/s10040-020-02220-z

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NARA Access Coverage1992-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10040
Publisher PageOpen Publisher Page
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