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Are urban impacts on heavy rainfall amplified in mountainous regions

Bibliographic Data

ID15547756
AuthorsD Flores (0000-0001-7358-0980, University of Lausanne, corresponding author), Marika Koukoula (0000-0002-8437-7272, University of Lausanne), Andreas F Prein (0000-0001-6250-179X, ETH Zurich), Andries Jan de Vries (0000-0002-1175-6474, University of Lausanne), Gregoire Mariethoz (0000-0002-8820-2808, University of Lausanne), Jörg Bendix (0000-0001-6559-2033, Philipps University of Marburg), Francina Domínguez (University of Illinois Urbana-Champaign), Rolando Célleri (0000-0002-7683-3768, University of Cuenca), Nadav Peleg (0000-0001-6863-2934, University of Lausanne)
Year2026
Volume21
Issue4
Pages044016-044016
Publication date2026-01-15
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueEnvironmental Research Letters (JOURNAL)
Journal identifiersISSN: 1748-9326 • E-ISSN: 1748-9326
PublisherIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/ae38f9
OpenAlexW7124460439
LanguageEN
References cited3

Global evidence indicates that orography can exert a strong influence on rainfall, thereby giving rise to natural hazards such as flooding in mountain areas. Alongside orographic influences, urban areas can also act to intensify storms, but their impact on heavy rainfall in high elevations has not yet been investigated in detail. Here, we quantify the contribution of a high-altitude city to both rainfall intensification and its daytime and nighttime patterns, focusing on the city of Cuenca in the Ecuadorian Andes. Modeling several observed storms with and without the city suggests that the urban area can enhance downstream precipitation by over 20% over a pre-existing hotspot of orographically induced precipitation. This urban-induced rainfall intensification seems to exceed that observed for cities of comparable size outside mountainous regions. This may be explained by Cuenca’s valley setting and its high humidity compared to its surroundings, suggesting that high-altitude cities with similar morphologies could amplify combined orographic-dynamic and urban-thermodynamic effects

Flood myth · Flooding (psychology · Orographic lift · Orography · Precipitation · Storm · Flood Risk Assessment and Management · Meteorological Phenomena and Simulations · Urban Heat Island Mitigation

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