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Sökning: hsv:(NATURVETENSKAP) hsv:(Geovetenskap och miljövetenskap) hsv:(Oceanografi hydrologi och vattenresurser) > Försvarshögskolan

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1.
  • Teutschbein, Claudia, 1985-, et al. (författare)
  • Drought hazards and stakeholder perception : Unraveling the interlinkages between drought severity, perceived impacts, preparedness, and management
  • 2023
  • Ingår i: Ambio. - : Springer Nature. - 0044-7447 .- 1654-7209. ; 52:7, s. 1262-1281
  • Tidskriftsartikel (refereegranskat)abstract
    • The future risk for droughts and water shortages calls for substantial efforts by authorities to adapt at local levels. Understanding their perception of drought hazards, risk and vulnerability can help to identify drivers of and barriers to drought risk planning and management in a changing climate at the local level. This paper presents a novel interdisciplinary drought case study in Sweden that integrates soft data from a nationwide survey among more than 100 local practitioners and hard data based on hydrological measurements to provide a holistic assessment of the links between drought severity and the perceived levels of drought severity, impacts, preparedness, and management for two consecutive drought events. The paper highlights challenges for drought risk planning and management in a changing climate at the local level and elaborates on how improved understanding of local practitioners to plan for climate change adaptation can be achieved.
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2.
  • Mondino, Elena, et al. (författare)
  • Exploring changes in hydrogeological risk awareness and preparedness over time : a case study in northeastern Italy
  • 2020
  • Ingår i: Hydrological Sciences Journal. - : Informa UK Limited. - 0262-6667 .- 2150-3435. ; 65:7, s. 1049-1059
  • Tidskriftsartikel (refereegranskat)abstract
    • Hydrogeological hazards are increasingly causing damage worldwide due to climatic and socio-economic changes. Building resilient communities is crucial to reduce potential losses. To this end, one of the first steps is to understand how people perceive potential threats around them. This study aims at exploring how risk awareness of, and preparedness to, face hydrological hazards changes over time. A cohort study was carried out in two villages in the northeastern Italian Alps, Romagnano and Vermiglio, affected by debris flows in 2000 and 2002. Surveys were conducted in 2005 and 2018, and the results compared. The survey data show that both awareness and preparedness decreased over time. We attribute this change to the fact that no event had occurred in a long time and to a lack of proper risk communication strategies. The outcomes of this study contribute to socio-hydrological modelling by providing empirical data on human behaviour dynamics.
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3.
  • Ridolfi, Elena, et al. (författare)
  • Exploring the role of risk perception in influencing flood losses over time
  • 2020
  • Ingår i: Hydrological Sciences Journal. - Milton Park, Oxfordshire : Taylor & Francis. - 0262-6667 .- 2150-3435. ; 65:1, s. 12-20
  • Tidskriftsartikel (refereegranskat)abstract
    • What implications do societies’ risk perceptions have for flood losses? This study uses a stylized, socio-hydrological model to simulate the mutual feedbacks between human societies and flood events. It integrates hydrological modelling with cultural theory and proposes four ideal types of society that reflect existing dominant risk perception and management: risk neglecting, risk monitoring, risk downplaying and risk controlling societies. We explore the consequent trajectories of flood risk generated by the interactions between floods and people for these ideal types of society over time. The results suggest that flood losses are substantially reduced when awareness-raising attitudes are promoted through inclusive, participatory approaches in the community. In contrast, societies that rely on top-down hierarchies and structural measures to protect settlements on floodplains may still suffer significant losses during extreme events. This study illustrates how predictions formed through social science theories can be applied and tested in hydrological modelling.
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