Effect of complex orography on numerical simulations of a downburst event in Spain

Fuente: arXiv
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Main Authors: Fernandez, Javier Diaz, Calvo-Sancho, Carlos, López-Reyes, Mauricio, Sastre, Mariano, Fernández-González, Sergio, Martín, M. L., Bolgiani, P.
Format: Preprint
Published: 2025
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author Fernandez, Javier Diaz
Calvo-Sancho, Carlos
López-Reyes, Mauricio
Sastre, Mariano
Fernández-González, Sergio
Martín, M. L.
Bolgiani, P.
author_facet Fernandez, Javier Diaz
Calvo-Sancho, Carlos
López-Reyes, Mauricio
Sastre, Mariano
Fernández-González, Sergio
Martín, M. L.
Bolgiani, P.
contents Supercells, characterized by their deep, persistent mesocyclones, are among the most severe convective weather systems, often associated with large hail, damaging winds, and significant societal impacts. Accurately simulating these events is essential for improving forecasting capabilities. This study evaluates the performance of two different nested strategies of the HARMONIE-AROME model in simulating a severe supercell outbreak over eastern Iberia on July 31, 2015, where at least six confirmed supercells were reported, producing large hail and significant damage. The configurations include H500_NESTED, a two-step one-way nested approach with a parent domain at 2.5 km resolution and a nested domain at 500 m resolution, and H500, a single-domain simulation at 500 m resolution. The simulated reflectivity is validated against OPERA radar data, while precipitation and temperature outputs are compared to observations from weather stations. Key convective parameters, derived from the Murcia radiosonde, are analyzed to assess the pre-convective environment. Results show that both configurations adequately capture the overall structure of the supercell event, with H500_NESTED offering marginally improved representations of reflectivity and thermodynamic variables. However, these improvements do not justify the 30% higher computational cost of the nested approach. The H500 simulation emerges as a more efficient option, providing comparable results at a lower cost.
format Preprint
id arxiv_https___arxiv_org_abs_2507_13303
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Effect of complex orography on numerical simulations of a downburst event in Spain
Fernandez, Javier Diaz
Calvo-Sancho, Carlos
López-Reyes, Mauricio
Sastre, Mariano
Fernández-González, Sergio
Martín, M. L.
Bolgiani, P.
Atmospheric and Oceanic Physics
Geophysics
Supercells, characterized by their deep, persistent mesocyclones, are among the most severe convective weather systems, often associated with large hail, damaging winds, and significant societal impacts. Accurately simulating these events is essential for improving forecasting capabilities. This study evaluates the performance of two different nested strategies of the HARMONIE-AROME model in simulating a severe supercell outbreak over eastern Iberia on July 31, 2015, where at least six confirmed supercells were reported, producing large hail and significant damage. The configurations include H500_NESTED, a two-step one-way nested approach with a parent domain at 2.5 km resolution and a nested domain at 500 m resolution, and H500, a single-domain simulation at 500 m resolution. The simulated reflectivity is validated against OPERA radar data, while precipitation and temperature outputs are compared to observations from weather stations. Key convective parameters, derived from the Murcia radiosonde, are analyzed to assess the pre-convective environment. Results show that both configurations adequately capture the overall structure of the supercell event, with H500_NESTED offering marginally improved representations of reflectivity and thermodynamic variables. However, these improvements do not justify the 30% higher computational cost of the nested approach. The H500 simulation emerges as a more efficient option, providing comparable results at a lower cost.
title Effect of complex orography on numerical simulations of a downburst event in Spain
topic Atmospheric and Oceanic Physics
Geophysics
url https://arxiv.org/abs/2507.13303