Simulations of Hurricane Katrina (2005) under sea level and climate conditions for 1900
Jennifer Irish (),
Alison Sleath (),
Mary Cialone (),
Thomas Knutson () and
Robert Jensen ()
Climatic Change, 2014, vol. 122, issue 4, 635-649
Abstract:
Global warming may result in substantial sea level rise and more intense hurricanes over the next century, leading to more severe coastal flooding. Here, observed climate and sea level trends over the last century (c. 1900s to 2000s) are used to provide insight regarding future coastal inundation trends. The actual impacts of Hurricane Katrina (2005) in New Orleans are compared with the impacts of a similar hypothetical hurricane occurring c. 1900. Estimated regional sea level rise since 1900 of 0.75 m, which contains a dominant land subsidence contribution (0.57 m), serves as a ‘prototype’ for future climate-change induced sea level rise in other regions. Landform conditions c. 1900 were estimated by changing frictional resistance based on expected additional wetlands at lower sea levels. Surge simulations suggest that flood elevations would have been 15 to 60 % lower c. 1900 than the conditions observed in 2005. This drastic change suggests that significantly more flood damage occurred in 2005 than would have occurred if sea level and climate conditions had been like those c. 1900. We further show that, in New Orleans, sea level rise dominates surge-induced flooding changes, not only by increasing mean sea level, but also by leading to decreased wetland area. Together, these effects enable larger surges. Projecting forward, future global sea level changes of the magnitude examined here are expected to lead to increased flooding in coastal regions, even if the storm climate is unchanged. Such flooding increases in densely populated areas would presumably lead to more widespread destruction. Copyright Springer Science+Business Media Dordrecht (outside the USA) 2014
Date: 2014
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Persistent link: https://EconPapers.repec.org/RePEc:spr:climat:v:122:y:2014:i:4:p:635-649
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DOI: 10.1007/s10584-013-1011-1
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