Open AccessBook Chapter
Coastal systems and low-lying areas
Robert J. Nicholls,P.P. Wong,V.R. Burket,J. Codignotto,J.E. Hay,Roger F. McLean,S. Ragoonaden,Colin D. Woodroffe +7 more
- 01 Jan 2007
- pp 315-356
TL;DR: Since the IPCC Third Assessment Report (TAR), our understanding of the implications of climate change for coastal systems and low-lying areas (henceforth referred to as "coasts") has increased substantially and six important policy-relevant messages have emerged as discussed by the authors.
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Abstract: Since the IPCC Third Assessment Report (TAR), our understanding of the implications of climate change for coastal systems and low-lying areas (henceforth referred to as ‘coasts’) has increased substantially and six important policy-relevant messages have emerged. Coasts are experiencing the adverse consequences of hazards related to climate and sea level (very high confidence). Coasts are highly vulnerable to extreme events, such as storms, which impose substantial costs on coastal societies [6.2.1, 6.2.2, 6.5.2]. Annually, about 120 million people are exposed to tropical cyclone hazards, which killed 250,000 people from 1980 to 2000 [6.5.2]. Through the 20th century, global rise of sea level contributed to increased coastal inundation, erosion and ecosystem losses, but with considerable local and regional variation due to other factors [6.2.5, 6.4.1]. Late 20th century effects of rising temperature include loss of sea ice, thawing of permafrost and associated coastal retreat, and more frequent coral bleaching and mortality [6.2.5]. Coasts will be exposed to increasing risks, including coastal erosion, over coming decades due to climate change and sea-level rise (very high confidence). Anticipated climate-related changes include: an accelerated rise in sea level of up to 0.6 m or more by 2100; a further rise in sea surface temperatures by up to 3°C; an intensification of tropical and extratropical cyclones; larger extreme waves and storm surges; altered precipitation/run-off; and ocean acidification [6.3.2]. These phenomena will vary considerably at regional and local scales, but the impacts are virtually certain to be overwhelmingly negative [6.4, 6.5.3].
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A Dipole Mode in the Tropical Indian Ocean
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Increasing destructiveness of tropical cyclones over the past 30 years
TL;DR: An index of the potential destructiveness of hurricanes based on the total dissipation of power, integrated over the lifetime of the cyclone, is defined and shows that this index has increased markedly since the mid-1970s, due to both longer storm lifetimes and greater storm intensities.
Climate Change, Human Impacts, and the Resilience of Coral Reefs
Terry P. Hughes,Andrew H. Baird,David R. Bellwood,M. Card,Sean R. Connolly,Carl Folke,Richard K. Grosberg,Ove Hoegh-Guldberg,Jeremy B. C. Jackson,Jeremy B. C. Jackson,Joan A. Kleypas,Janice M. Lough,Paul Marshall,Magnus Nyström,Stephen R. Palumbi,John M. Pandolfi,Brian R. Rosen,Jonathan Roughgarden +17 more
TL;DR: International integration of management strategies that support reef resilience need to be vigorously implemented, and complemented by strong policy decisions to reduce the rate of global warming.