Environmental Science & Policy · 2017 · 160 citations · 63 references
Resilience (Structural Engineering)EngineeringResilience ThinkingSocial SciencesResilience (Community Psychology)Climate ResilienceCommunity ResilienceRisk ManagementDisaster MitigationExtreme Weather EventsScientific ConceptClimate Change ResilienceDisaster Risk ManagementDisaster ResilienceClimate-resilient Environmental SystemsDisaster ManagementResilience AnalysisSociologyResilience EngineeringCrisis ManagementDisaster Risk ReductionNatural Hazard Mitigation
Resilience is a widely used concept with varying interpretations, adopted in policy contexts for climate change and extreme weather, and encompasses aspects beyond traditional disaster risk management. The study seeks to identify the key implications of resilience thinking for managing extreme weather events and convert them into actionable policy principles. It achieves this by translating those implications into five practical principles for policy makers.
The concept of resilience is used by many in different ways: as a scientific concept, as a guiding principle, as inspirational ‘buzzword’, or as a means to become more sustainable. Next to the academic debate on meaning and notions of resilience, the concept has been widely adopted and interpreted in policy contexts, particularly related to climate change and extreme weather events. In addition to having a positive connotation, resilience may cover aspects that are missed in common disaster risk management approaches. Although the precise definition of resilience may remain subject of discussion, the views on what is important to consider in the management of extreme weather events do not differ significantly. Therefore, this paper identifies the key implications of resilience thinking for the management of extreme weather events and translates these into five practical principles for policy making.
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Prospect Theory: An Analysis of Decision under Risk
Daniel Kahneman, Amos Tversky · Econometrica · 1979 · 45.8K citations
Resilience, Adaptability and Transformability in Social-ecological Systems
Brian Walker, C. S. Holling, Stephen R. Carpenter et al. · Ecology and Society · 2004 · 7.2K citations · Full text