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Investigation of Water Storage Dynamics and Delayed Hydrological Responses Using GRACE, GLDAS, ERA5-Land and Meteorological Data in the Kızılırmak River Basin

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  • Erdem Kazancı

    (Gravity Research Group, Geomatics Engineering Department, Istanbul Technical University, 34469 Istanbul, Türkiye
    Trabzon Governorship—Presidency of Investment Monitoring and Coordination, 61040 Trabzon, Türkiye
    Osmaniye Governorship—EU and Foreign Affairs Office, 80010 Osmaniye, Türkiye)

  • Serdar Erol

    (Gravity Research Group, Geomatics Engineering Department, Istanbul Technical University, 34469 Istanbul, Türkiye)

  • Bihter Erol

    (Gravity Research Group, Geomatics Engineering Department, Istanbul Technical University, 34469 Istanbul, Türkiye)

Abstract

Monitoring groundwater dynamics and basin-scale water budget closure is critical for sustainable water resource management, especially in regions facing climate stress and overexploitation. This study examines the temporal variability of total water storage and groundwater trends in Türkiye’s Kızılırmak River Basin by integrating GRACE/GRACE-FO satellite gravimetry, GLDAS-Noah land surface model outputs, ERA5-Land reanalysis products, and local meteorological observations. Groundwater storage anomalies (GWSAs) were derived from the difference between GRACE-based total water storage anomalies (TWSAs) and GLDAS-modeled surface storage components, revealing a long-term groundwater depletion trend of −9.55 ± 2.6 cm between 2002 and 2024. To investigate the hydrological drivers of these changes, lagged correlation analyses were performed between GRACE TWSA and ERA5-Land variables (precipitation, evapotranspiration, runoff, soil moisture, and temperature), showing time-shifted responses from −3 to +3 months. The strongest correlations were found with soil moisture (CC = 0.82 at lag −1), temperature (CC = −0.70 at lag −3), and runoff (CC = 0.71 at lag 0). A moderate correlation between GRACE TWSA and ERA5-based water storage closure (CC = 0.54) indicates partial alignment. These findings underscore the value of satellite gravimetry in tracking subsurface water changes and support its role in basin-scale hydrological assessments.

Suggested Citation

  • Erdem Kazancı & Serdar Erol & Bihter Erol, 2025. "Investigation of Water Storage Dynamics and Delayed Hydrological Responses Using GRACE, GLDAS, ERA5-Land and Meteorological Data in the Kızılırmak River Basin," Sustainability, MDPI, vol. 17(22), pages 1-30, November.
  • Handle: RePEc:gam:jsusta:v:17:y:2025:i:22:p:10100-:d:1792847
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