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Potential cascading geohazard: El Arrecife landslide in Rules reservoir, Southeastern Spain

Víctor Mora-Bajén; Jose Delgado; Jesús Galindo-Zaldívar; Sergio Ortega; José Manuel González-Vida; Asier Madarieta-Txurruka; Julio Garzón-Roca; Boualem Youcef Nassim Benabdeloued; Francisco Lamas; Salvatore Martino; Martín Jesús Rodríguez-Peces; Francisco José Martínez-Moreno; Javier Valencia; Jesús Garrido; Simona Marano; Lourdes González-Castillo; Gemma Ercilla
Landslides · Vol. 23, Issue 7 · pp. 1839-1859 · 2026

Abstract

A multidisciplinary study integrating geological, geomorphological, geophysical, geotechnical, and numerical modeling has been implemented to assess the potential cascading geohazard of the El Arrecife landslide. It is an active landslide, located in the tectonically active central Betic Cordillera (southern Spain), posing a threat to the Rules reservoir, and to the N-323 and A-346 roads, and the A-44 highway, connecting the city of Granada to the coast. This study redefines its morphology and characterizes its stratigraphy for the first time. A continuous rupture surface has been identified, with an estimated total volume of approximately 8 × 10 6 m 3 of highly weathered phyllites overlying a heterogeneous metamorphic basement. The landslide is composite, with a 1 km long head comprising two main bodies of similar size (500 m long and 400 m wide each) and ductile deformation features. It has been further enlarged and accelerated by anthropogenic intervention. Stability modeling indicates that the rapid disengagement of the entire landslide may be triggered by a M w 6.0–6.6 earthquake originating in the nearby Padul–Nigüelas, Dílar or Albuñuelas faults at the upper end of their seismic potential. The simulation of the impulse wave generated in the Rules reservoir predicts a maximum height of 46 m on the opposite shore, when the reservoir is at its full capacity, sufficient to reach and locally flood the A‑44 highway, and slightly overtop the dam. This study emphasizes the need for enhanced monitoring to anticipate and mitigate its potential cascading geohazard around the Rules reservoir and in worldwide analogues.

Bibliographic Information

JournalLandslides
PublisherSpringer
Publication Date2026-07-01
Publication Year2026
Volume23
Issue7
Pages1839-1859
Document TypeJournal Article
Print ISSN1612-510X
eISSN1612-5118
DOI10.1007/s10346-026-02744-7

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NARA Access Coverage2004-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10346
Publisher PageOpen Publisher Page
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