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Integrated Hydrologic Model Calibration Under Non-Stationary Climate Conditions

Description: This research quantified changes in calibrated parameters under different non-stationary climate scenarios in the upper Cumberland River valley of Kentucky, USA. An integrated hydrologic model of the site was developed using HydroGeoSphere and was calibrated using PEST. The model effectively simulates groundwater response trends during flooding events, while also demonstrate that including observations from flood-inducing precipitation events influenced the calibrated parameters for lateral subsurface water movement and aquifer storage.
Authors: Mohan, Song; University of Waterloo; ORCID iD 0009-0002-2680-3613
Andrea, Brookfield; University of Waterloo; ORCID iD 0000-0003-3739-0025
Amanda, Sherman; University of Kentucky
Alan, Fryar; University of Kentucky; ORCID iD 0000-0003-2586-6858
Keywords: integrated hydrologic model
climate change
hydrologic model calibration
HydroGeoSphere
Cumberland River basin
Field of Research: 
Earth and related environmental sciences
>
Hydrology
>
Hydrogeology
Publication Date: 2025-04-25
Publisher: Federated Research Data Repository / dépôt fédéré de données de recherche
Funder: Natural Sciences and Engineering Research Council; Discovery Grant
Kentucky Department of Military Affairs
URI: https://doi.org/10.20383/103.01248
Related Identifiers: 
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Geographic Coverage: 
Place Name
Harold L. Disney Training Center (HLDTC
City
Knox County
State
Kentucky
Country
United States
Geolocation Box: 
West Longitude
83.83439
East Longitude
83.82335
North Latitude
36.83667
South Latitude
36.82464
Appears in Collections:Water Institute

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Access to this dataset is subject to the following terms:
Creative Commons Attribution 4.0 International (CC BY 4.0) https://creativecommons.org/licenses/by/4.0/
Citation
Mohan, S., Andrea, B., Amanda, S., Alan, F. (2025). Integrated Hydrologic Model Calibration Under Non-Stationary Climate Conditions. Federated Research Data Repository. https://doi.org/10.20383/103.01248