Relationship of Weather Types on the Seasonal and Spatial Variability of Rainfall, Runoff, and Sediment Yield in the Western Mediterranean Basin

Autor/a

Peña-Angulo, Dhais

Nadal-Romero, E.

González-Hidalgo, José Carlos

Albaladejo, J.

Andreu, V.

Bahri, H.

Bernal, S.

Biddoccu, M.

Bienes, Ramón

Campo, J.

Campo-Bescós, M.A.

Canatário-Duarte, A.

Cantón, Y.

Casalí Sarasibar, Javier

Castillo, Víctor

Cavallo, Eugenio

Cerdà, Artemio

Cid, Patricio

Cortesi, N.

Desir, Gloria

Díaz-Pereira, E.

Espigares, Tiscar

Estrany, Joan

Farguell Pérez, Joaquim

Fernández-Raga, M.

Ferreira, C.S.S.

Ferro, Vito

Gallart, Francesc

Giménez, R.

Gimeno, E.

Gómez, J. A.

Gómez-Gutiérrez, A.

Gómez Macpherson, Helena

González-Pelayo, O.

Kairis, O.

Karatzas, G.P.

Keesstra, Saskia

Klotz, S.

Kosmas, C.

Lana-Renault, N.

Lasanta, Teodoro

Latron, J.

Lázaro, R.

Le Bissonnais, Yves

Le Bouteiller, C.

Licciardello, F.

López Tarazón, José Andrés

Lucía, A.

Marín-Moreno, V.M.

Marín, C.

Marqués, M.J.

Martínez Fernández, José

Martínez-Mena, M.

Mateos, Luciano

Mathys, Nicole

Merino-Martín, L.

Moreno-de-las-Heras, Mariano

Moustakas, N.

Nicolau, J.M.

Pampalone, V.

Raclot, D.

Rodríguez-Blanco, M.L.

Rodrigo Comino, Jesús

Romero Díaz, María Asunción

Ruiz Sinoga, José Damián

Rubio, J.L.

Schnabel, Susanne

Senciales González, José María

Solé-Benet, A.

Taguas, E.V.

Taboada Castro, Ma. Teresa

Taboada-Castro, M.M.

Todisco, F.

Úbeda, Xavier

Varouchakis, E.A.

Wittenberg, L.

Zabaleta, A.

Zorn, Matija

Fecha de publicación

2020-12-11T08:09:46Z

2020-12-11T08:09:46Z

2020-06-09

Resumen

Rainfall is the key factor to understand soil erosion processes, mechanisms, and rates. Most research was conducted to determine rainfall characteristics and their relationship with soil erosion (erosivity) but there is little information about how atmospheric patterns control soil losses, and this is important to enable sustainable environmental planning and risk prevention. We investigated the temporal and spatial variability of the relationships of rainfall, runoff, and sediment yield with atmospheric patterns (weather types, WTs) in the western Mediterranean basin. For this purpose, we analyzed a large database of rainfall events collected between 1985 and 2015 in 46 experimental plots and catchments with the aim to: (i) evaluate seasonal differences in the contribution of rainfall, runoff, and sediment yield produced by the WTs; and (ii) to analyze the seasonal efficiency of the different WTs (relation frequency and magnitude) related to rainfall, runoff, and sediment yield. The results indicate two different temporal patterns: the first weather type exhibits (during the cold period: autumn and winter) westerly flows that produce the highest rainfall, runoff, and sediment yield values throughout the territory; the second weather type exhibits easterly flows that predominate during the warm period (spring and summer) and it is located on the Mediterranean coast of the Iberian Peninsula. However, the cyclonic situations present high frequency throughout the whole year with a large influence extended around the western Mediterranean basin. Contrary, the anticyclonic situations, despite of its high frequency, do not contribute significantly to the total rainfall, runoff, and sediment (showing the lowest efficiency) because of atmospheric stability that currently characterize this atmospheric pattern. Our approach helps to better understand the relationship of WTs on the seasonal and spatial variability of rainfall, runoff and sediment yield with a regional scale based on the large dataset and number of soil erosion experimental stations.


Spanish Government (Ministry of Economy and Competitiveness, MINECO) and FEDER Projects: CGL2014 52135-C3-3-R, ESP2017-89463-C3-3-R, CGL2014-59946-R, CGL2015-65569-R, CGL2015-64284-C2-2-R, CGL2015-64284-C2-1-R, CGL2016-78075-P, GL2008-02879/BTE, LEDDRA 243857, RECARE-FP7, CGL2017-83866-C3-1-R, and PCIN-2017-061/AEI. Dhais Peña-Angulo received a “Juan de la Cierva” postdoctoral contract (FJCI-2017-33652 Spanish Ministry of Economy and Competitiveness, MEC). Ana Lucia acknowledge the "Brigitte-Schlieben-Lange-Programm". The “Geoenvironmental Processes and Global Change” (E02_17R) was financed by the Aragón Government and the European Social Fund. José Andrés López-Tarazón acknowledges the Secretariat for Universities and Research of the Department of the Economy and Knowledge of the Autonomous Government of Catalonia for supporting the Consolidated Research Group 2014 SGR 645 (RIUS- Fluvial Dynamics Research Group). Artemi Cerdà thank the funding of the OCDE TAD/CRP JA00088807. José Martínez-Fernandez acknowledges the project Unidad de Excelencia CLU-2018-04 co-funded by FEDER and Castilla y León Government. Ane Zabaleta is supported by the Hydro-Environmental Processes consolidated research group (IT1029-16, Basque Government). This paper has the benefit of the Lab and Field Data Pool created within the framework of the COST action CONNECTEUR (ES1306).

Tipo de documento

Artículo
Versión publicada

Lengua

Inglés

Materias y palabras clave

Weather types; Rainfall; Runoff; Erosion; Sediment yield; Seasonal analyses; Mediterranean basin

Publicado por

MDPI

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Reproducció del document publicat a: https://doi.org/10.3390/atmos11060609

Atmosphere, 2020, vol. 11, núm. 6, p. 609

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Derechos

cc-by, (c) Peña-Angulo, Dhais et al., 2020

http://creativecommons.org/licenses/by/4.0/

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