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September 18, 2025Geosciences2 citationsOpen Access

Co- and Post-Seismic Hydrogeological Anomalies in Greece from Ancient Times to the Present: Spatiotemporal and Statistical Analysis Revealing Categories, Patterns, and Insights

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SMSpyridon MavroulisASAndromachi SarantopoulouELEfthymios Lekkas

Key Points

  • About 77% of earthquakes produced only one or two types of hydrogeological anomalies, indicating localized impacts.
  • Most anomalies occur in Greece’s second seismic hazard zone, with a dominant presence of springs and wells affected.
  • Earthquakes with magnitudes of 6.0 to 7.0 generate the most diverse range of anomalies based on local geological conditions.
  • Though usually not fatal, hydrogeological anomalies can harm water supplies, necessitating improved monitoring and management.

Abstract

Co- and post-seismic earthquake-induced hydrogeological anomalies (EQHAs) in Greece are mainly associated with moderate to strong earthquakes (Mw = 6.0–7.0), particularly when seismic intensities reach IX or above. The highest frequencies are observed in the Peloponnese and Ionian Islands, followed by Central Greece and the North Aegean, characterized by dense faulting and frequent strong earthquakes. EQHAs are classified into six main types, with hydraulic variations being the most common. About 77% of earthquakes produced only one or two types of EQHA, suggesting localized hydrogeological effects, while only a few induced multiple types. Strong events (Mw = 6.0–7.0), often historic, generated the broadest variety, highlighting the influence of local geological, hydrological, and tectonic conditions on magnitude alone. Springs and wells, representing 81% of the cases, dominate the affected systems, while lakes and rivers respond less often but significantly. Most EQHAs occur in Greece’s second seismic hazard zone (74%) due to its larger geographic area. EQHAs primarily develop in karstic and porous formations but also appear in impermeable rocks due to fracturing or karst. Larger earthquakes trigger anomalies at greater distances (>100 km). Though rarely fatal, EQHAs can damage water infrastructure, contaminate supplies, and cause shortages, underscoring the need for systematic monitoring and post-earthquake water resource management.

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Cite This Study

Mavroulis et al. (2025) studied this question.

synapsesocial.com/papers/68d462b631b076d99fa61875https://doi.org/10.3390/geosciences15090367
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