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    Dendrogeomorphological Evidence Of Flood Frequency Changes And Human Activities (Portaine Basin, Spanish Pyrenees)

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    Author
    Genova, M.
    Diez-Herrero, A.
    Furdada, G.
    Guinau, M.
    Victoriano, A.
    Issue Date
    2018-07
    Keywords
    dendrogeomorphology
    multi-evidence
    ungauged mountain basins
    flood frequency changes
    anthropogenic effects
    Pyrenees
    
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    Citation
    M. Génova, A. Díez-Herrero, G. Furdada, M. Guinau, and A. Victoriano "Dendrogeomorphological Evidence of Flood Frequency Changes and Human Activities (Portainé Basin, Spanish Pyrenees)," Tree-Ring Research 74(2), 144-161, (1 July 2018). https://doi.org/10.3959/1536-1098-74.2.144
    Publisher
    Tree-Ring Society
    Journal
    Tree-Ring Research
    URI
    http://hdl.handle.net/10150/670985
    DOI
    10.3959/1536-1098-74.2.144
    Additional Links
    https://www.treeringsociety.org/
    Abstract
    The Portaine mountain catchment, containing the Port Aine ski resort (Lleida, Spanish Pyrenees), displays active erosional and depositional phenomena caused by periodic torrential floods. These events present a potential risk and incur significant economic losses. In ungauged remote catchments (like Portaine), trees might be the only paleohydrological source of information regarding past floods. Thus, we estimated the temporal and spatial distribution of torrential floods by dendrogeomorphological techniques to assess whether human impact (land-use changes and infrastructure works) affected their frequency andmagnitude. One-hundred and sixty-six samples from 67 trees belonging to 10 different species were analyzed; past flood events of the last 50 years were identified by dating and relating evidence between them. Moreover, a detailed geomorphological study was performed and the available historical data compiled. Our multi-evidence analysis provides new insight into the occurrence of paleofloods. Changes in flood frequency since 2006, especially from 2008, suggest that the geomorphological equilibrium has been disturbed, coinciding with both major earthworks within the ski resort and intense but not extraordinary rainfall. This conclusion has important implications for land planning and the design of future projects in the mountain watersheds.
    Type
    Article
    text
    ISSN
    1536-1098
    EISSN
    2162-4585
    ae974a485f413a2113503eed53cd6c53
    10.3959/1536-1098-74.2.144
    Scopus Count
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    Tree-Ring Research, Volume 74, Issue 2 (Jul 2018)

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