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Emergence timescales for detection of anthropogenic climate change in US tropical cyclone loss data

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Published 11 January 2011 Published under licence by IOP Publishing Ltd
, , Citation Ryan P Crompton et al 2011 Environ. Res. Lett. 6 014003 DOI 10.1088/1748-9326/6/1/014003

1748-9326/6/1/014003

Abstract

Recent reviews have concluded that efforts to date have yet to detect or attribute an anthropogenic climate change influence on Atlantic tropical cyclone (of at least tropical storm strength) behaviour and concomitant damage. However, the possibility of identifying such influence in the future cannot be ruled out. Using projections of future tropical cyclone activity from a recent prominent study we estimate the time that it would take for anthropogenic signals to emerge in a time series of normalized US tropical cyclone losses. Depending on the global climate model(s) underpinning the projection, emergence timescales range between 120 and 550 years, reflecting a large uncertainty. It takes 260 years for an 18-model ensemble-based signal to emerge. Consequently, under the projections examined here, the detection or attribution of an anthropogenic signal in tropical cyclone loss data is extremely unlikely to occur over periods of several decades (and even longer). This caution extends more generally to global weather-related natural disaster losses.

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