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来源类型Article
规范类型其他
DOI10.5194/nhess-17-77-2017
Development and testing of a community flood resilience measurement tool.
Keating A; Campbell K; Szoenyi M; McQuistan C; Nash D; Burer M
发表日期2017
出处Natural Hazards and Earth System Sciences Discussions 17 (1): 77-101
出版年2017
语种英语
摘要Given the increased attention on resilience-strengthening in international humanitarian and development work, there is a growing need to invest in its measurement and the overall accountability of "resilience strengthening" initiatives. We present a framework and tool for measuring community level resilience to flooding, built around the five capitals (5Cs) of the Sustainable Livelihoods Framework. At the time of writing the tool is being tested in 75 communities across 10 countries. Currently 88 potential sources of resilience are measured at the baseline (initial state) and endline (final state) approximately two years later. If a flood occurs in the community during the study period, resilience outcome measures are recorded. By comparing pre-flood characteristics to post flood outcomes, we aim to empirically verify sources of resilience, something which has never been done in this field. There is an urgent need for the continued development of theoretically anchored, empirically verified and practically applicable disaster resilience measurement frameworks and tools so that the field may: a) deepen understanding of the key components of "disaster resilience" in order to better target resilience enhancing initiatives, and b) enhance our ability to benchmark and measure disaster resilience over time, and compare how resilience changes as a result of different capacities, actions and hazards.
主题Risk & ; Resilience (RISK) ; Risk, Policy and Vulnerability (RPV)
关键词Disaster, flood, community, resilience, measurement, monitoring and evaluation
URLhttp://pure.iiasa.ac.at/id/eprint/13279/
来源智库International Institute for Applied Systems Analysis (Austria)
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资源类型智库出版物
条目标识符http://119.78.100.153/handle/2XGU8XDN/130880
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Keating A,Campbell K,Szoenyi M,et al. Development and testing of a community flood resilience measurement tool.. 2017.
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