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Single event time series analysis in a binary karst catchment evaluated using a groundwater model (Lurbach system,
C Mayaud1, T Wagner1, R Benischke2
1Institute for Earth Sciences, University of Graz, Heinrichstraße 26, A-8010 Graz, Austria.
Summary
Inter-catchment flow in karst systems can be identified using time series analysis of single events. This method, validated by a groundwater model, highlights aquifer heterogeneity and overflow zone location as key factors.
Area of Science:
- Hydrology
- Hydrogeology
- Karst Science
Background:
- The Lurbach karst system exhibits complex hydrological behavior with both autogenic and allogenic recharge.
- Inter-catchment flow between sub-catchments is triggered by high spring discharge thresholds.
Purpose of the Study:
- To evaluate time series analysis methods for identifying transient inter-catchment flow in a binary karst system.
- To validate these methods using a simplified groundwater flow model (MODFLOW).
Main Methods:
- Time series analysis (autocorrelation, cross-correlation) applied to tracer experiment data.
- Development and application of a MODFLOW-based synthetic karst aquifer model.
- Simulation of various allogenic recharge intensities and hydraulic property variations.
Main Results:
- Time series analysis successfully identified intermittent inter-catchment flow, consistent with observed data.
- The MODFLOW model simulated overflow behavior, supporting the understanding of the karst system.
- Cross-correlation analysis revealed similar patterns between real and synthetic data, indicating comparable aquifer properties.
Conclusions:
- Time series analysis of single events is a viable method for characterizing transient inter-catchment flow in karst systems.
- Aquifer parameter heterogeneity and the location of the overflow zone are critical factors controlling inter-catchment flow.
- Findings support the understanding of an overflow zone in the upper Lurbach karst aquifer.
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