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September 10, 2025Geophysical Research Letters13 citationsOpen Access

The Strong Impact of Precipitation Intensity on Groundwater Recharge and Terrestrial Water Storage Change in Arizona, a Typical Dryland

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YQYuan QiuJFJ. S. FamigliettiABAli Behrangi

Key Points

  • Higher precipitation intensity leads to 6.91 mm/year groundwater recharge, vastly outperforming lower intensity.
  • Lower precipitation intensity results in a groundwater storage decline of 0.51 mm/month, nearly tripling that of higher intensity.
  • The Noah-MP model was employed to analyze the impact of different precipitation intensities on water storage.
  • Findings highlight the need for accurate precipitation intensity measures in hydrological modeling.

Abstract

Abstract This study demonstrates the critical role of precipitation intensity in groundwater recharge generation and terrestrial water storage (TWS) change. We conducted two experiments driven by precipitation products with close annual totals but distinct intensity in Arizona, using the Noah‐MP model with advanced soil hydrology. The experiment with higher precipitation intensity (EXP HI ) produces an annual groundwater recharge of 6.91 mm/year in Arizona during 2001–2020, ∼15 times that of the experiment with lower precipitation intensity (EXP LI ). Correspondingly, EXP LI produces a declining groundwater storage (GWS) trend of 0.51 mm/month, nearly triple that of EXP HI . GWS change dominates the TWS trend. EXP LI shows a declining TWS trend of 0.57 mm/month, nearly twice that of EXP HI . Higher precipitation intensity reduces evapotranspiration and enhances infiltration and percolation, allowing more precipitation to recharge groundwater. This study underscores the need to ensure the accuracy of precipitation intensity in hydrological modeling for reliable water resources assessment and projection.

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Cite This Study

Qiu et al. (2025) studied this question.

synapsesocial.com/papers/68c1a8f654b1d3bfb60e18c0https://doi.org/10.1029/2025gl114747
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