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    Título
    Influence of land cover on lightning and convective precipitation over the European continent
    Autor(es)
    Rivas Soriano, Luis JesúsAutoridad USAL ORCID
    Sánchez Llorente, José MiguelAutoridad USAL
    González Zamora, ÁngelAutoridad USAL ORCID
    Pablo Dávila, Fernando Mateo deAutoridad USAL ORCID
    Palabras clave
    Land Cover
    lightning
    Convective Precipitation
    European continent
    Fecha de publicación
    2019
    Editor
    SAGE Publications
    Citación
    Rivas Soriano, L., Sánchez Llorente, J., González Zamora, A., & de Pablo Dávila, F. (2019). Influence of land cover on lightning and convective precipitation over the European continent. Progress in Physical Geography: Earth and Environment, 43(3), 352-364. https://doi.org/10.1177/0309133318825285 (
    Resumen
    [EN]The impact of land cover on lightning and convective precipitation in the summertime over Europe was analysed using five-year data. Lightning data were obtained with the Optical Transient Detector (OTD) at a 0.5x0.5 spatial resolution and the convective precipitation data were calculated by the NCEP/DOE AMIP-II Reanalysis at a *1.9x1.9 spatial resolution. Data concerning land cover were obtained from the Global Land Cover Facility, although the original 14 categories were grouped into seven categories (water, forest, shrubland, grassland, cropland, bare ground and urban). For all latitude ranges, forested areas tend to increase convective activity during the warm period of the year, and the general effect of shrubland areas is to suppress convective activity. The behaviour of convection in relation to grasslands and croplands depends on latitude. At low latitudes both vegetation types tend to increase convection during the summer. At high latitudes, grassland and cropland areas appear to be associated with the opposite effect in relation to convection: grass suppresses and crops enhance it. Finally, bare soil tends to decrease convective activity. These results seem to be related to the impact of vegetation on soil moisture and roughness. In general, vegetation areas associated with high soil moisture contents and high values in roughness length tend to enhance convective activity.
    URI
    https://hdl.handle.net/10366/167304
    ISSN
    0309-1333
    DOI
    10.1177/0309133318825285
    Versión del editor
    https://doi.org/10.1177/0309133318825285
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    • DFF. Artículos del Departamento de Física Fundamental [68]
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