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A new approach to model the spatial and temporal variability of recharge to karst aquifers
A. Hartmann
, J. Lange
, M. Weiler
, Y. Arbel
,
N. Greenbaum
Department of Geography and Environmental Studies
Department of Natural Resources and Environmental Management
Research output
:
Contribution to journal
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Article
›
peer-review
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Keyphrases
Temporal Variability
100%
Spatial Variability
100%
Recharge
100%
Karst Aquifer
100%
Epikarst
40%
Israel
20%
Conceptual Model
20%
High Spatial
20%
Mount Carmel
20%
Carbonate Rocks
20%
Model Performance
20%
Hydrological Model
20%
Spatially Distributed
20%
Karst System
20%
Data-scarce Regions
20%
System Properties
20%
Model Calibration
20%
Karstic Cave
20%
Calibration Strategy
20%
Recharge Model
20%
Statistical Variables
20%
Groundwater Recharge
20%
Iterative Calibration
20%
Recharge Time
20%
Property Distribution
20%
Surface Dissolution
20%
Earth and Planetary Sciences
Time Series
100%
Karst Aquifer
100%
Epikarst
100%
Israel
50%
Carbonate Rock
50%
Distribution (Property)
50%
Near-Surface Geology
50%
Groundwater Recharge
50%