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February 19, 20260 citationsOpen Access

Uncovering the impacts of depleting aquifers: A remote sensing analysis of land subsidence in Iran

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MHMahmud Haghshenas HaghighiMMMahdi Motagh

Key Points

  • The study aims to assess the impacts of groundwater pumping on land subsidence in Iran using satellite data.
  • Utilized a 100-meter resolution satellite survey from 2014 to 2020.
  • Analyzed land subsidence across a vast area of Iran linked to groundwater usage.
  • Investigated subsidence rates in relation to irrigation practices.
  • Approximately 56,000 km² of Iran is experiencing land subsidence, predominantly due to irrigation.
  • Around 3000 km² shows subsidence rates exceeding 10 cm/year.
  • Two-thirds of the country's depleting aquifers are located in the central plateau catchment, with some areas sinking over 35 cm/year.
  • Annual groundwater depletion is estimated at 1.7 billion cubic meters from confined aquifers.
  • The long-term compaction of aquifers is significantly greater than their seasonal responses, indicating permanent loss.

Abstract

Intensive groundwater pumping, previously unrecognized in its full extent, is blamed for aquifer degradation and widespread land subsidence in Iran. We use a 100-meter resolution satellite survey from 2014 to 2020 to assess the recent implications of groundwater usage across the country. Results indicate that approximately 56,000 km2 (3.5%) of the country's area is subject to land subsidence, primarily linked to irrigation; 3000 km2 of this area experiences subsidence rates greater than 10 cm/year. The central plateau catchment hosts two-thirds of the country's depleting aquifers, with locations sinking at rates higher than 35 cm/year. The results suggest an annual groundwater depletion of 1.7 billion cubic meters (BCM) from confined and semiconfined aquifers, with the long-term inelastic compaction for most aquifers being approximately one order of magnitude larger than their seasonal elastic response. This underscores the permanent loss of aquifers that jeopardizes the sustainability of water resources across Iran.

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Cite This Study

Haghighi et al. (2026) studied this question.

synapsesocial.com/papers/6996a84cecb39a600b3eedeehttps://doi.org/10.15488/20655
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