Assessment of shallow landslide risk mitigation measures based on land use planning through probabilistic modelling
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  • 作者:Jorge Pedro Galve (1)
    Andrea Cevasco (2)
    Pierluigi Brandolini (2)
    Mauro Soldati (3)

    1. Departamento de Ciencias de la Tierra
    ; Universidad de Zaragoza ; C/Pedro Cerbuna 12 ; 50009 ; Zaragoza ; Spain
    2. Dipartimento di Scienze della Terra
    ; dell鈥橝mbiente e della Vita ; Universit脿 di Genova ; Corso Europa 26 ; 16132 ; Genoa ; Italy
    3. Dipartimento di Scienze Chimiche e Geologiche
    ; Universit脿 di Modena e Reggio Emilia ; Largo S. Eufemia 19 ; 41121 ; Modena ; Italy
  • 关键词:Shallow landslide ; Debris flood ; Probabilistic modelling ; Risk management ; Terraced slopes ; Cinque Terre
  • 刊名:Landslides
  • 出版年:2015
  • 出版时间:February 2015
  • 年:2015
  • 卷:12
  • 期:1
  • 页码:101-114
  • 全文大小:6,157 KB
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  • 刊物类别:Earth and Environmental Science
  • 刊物主题:Earth sciences
    Applied Geosciences
    Geography
    Agriculture
    Civil Engineering
  • 出版者:Springer Berlin Heidelberg
  • ISSN:1612-5118
文摘
On October 25, 2011, an extreme rainfall event affected a wide area along the coasts of Cinque Terre (eastern Liguria, northern Italy). Particularly, in the Vernazza catchment, the event triggered hundreds of shallow landslides and a debris flood that caused three casualties. Investigation of the slope stability after the event was carried out aiming at defining the most effective mitigation measures which may be adopted in future land use planning. To this objective, a susceptibility model was produced and a series of scenarios were simulated using probabilistic methods. The susceptibility model has provided information about landslide conditioning factors on which to act for reducing landslide occurrence and therefore the associated risk. The simulations have taken into consideration the following alternative types of mitigation measures: (1) restoration of abandoned terraces, (2) reforestation of abandoned terraces, (3) use of local structural measures over stretches of potentially unstable hillsides and (4) avoidance of any intervention. The advantages and the disadvantages of the proposed mitigation measures for shallow landslide risk are discussed considering the results of the simulations and taking into account their complex interaction with environmental, historical, cultural and socio-economic aspects. The results show that the most effective mitigation strategy for reducing landslide risk at short term consists of applying structural measures over potentially unstable slopes. However, a long-term programme promoting the development of agricultural or forestry practices on terraced slopes is necessary. In fact, the simulations indicate that if no measures are applied to avoid the degradation of the terraced areas, landslide areal frequency would inevitably increase.

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