Literature DB >> 24014154

Climate change hotspots in the CMIP5 global climate model ensemble.

Noah S Diffenbaugh1, Filippo Giorgi.   

Abstract

We use a statistical metric of multi-dimensional climate change to quantify the emergence of global climate change hotspots in the CMIP5 climate model ensemble. Our hotspot metric extends previous work through the inclusion of extreme seasonal temperature and precipitation, which exert critical influence on climate change impacts. The results identify areas of the Amazon, the Sahel and tropical West Africa, Indonesia, and the Tibetan Plateau as persistent regional climate change hotspots throughout the 21st century of the RCP8.5 and RCP4.5 forcing pathways. In addition, areas of southern Africa, the Mediterranean, the Arctic, and Central America/western North America also emerge as prominent regional climate change hotspots in response to intermediate and high levels of forcing. Comparisons of different periods of the two forcing pathways suggest that the pattern of aggregate change is fairly robust to the level of global warming below approximately 2°C of global warming (relative to the late-20th-century baseline), but not at the higher levels of global warming that occur in the late-21st-century period of the RCP8.5 pathway, with areas of southern Africa, the Mediterranean, and the Arctic exhibiting particular intensification of relative aggregate climate change in response to high levels of forcing. Although specific impacts will clearly be shaped by the interaction of climate change with human and biological vulnerabilities, our identification of climate change hotspots can help to inform mitigation and adaptation decisions by quantifying the rate, magnitude and causes of the aggregate climate response in different parts of the world.

Entities:  

Year:  2012        PMID: 24014154      PMCID: PMC3765072          DOI: 10.1007/s10584-012-0570-x

Source DB:  PubMed          Journal:  Clim Change        ISSN: 0165-0009            Impact factor:   4.743


  19 in total

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Journal:  Nature       Date:  2005-09-22       Impact factor: 49.962

4.  Fine-scale processes regulate the response of extreme events to global climate change.

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Authors:  Scott R Loarie; Philip B Duffy; Healy Hamilton; Gregory P Asner; Christopher B Field; David D Ackerly
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3.  Uncertainties in the timing of unprecedented climates.

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4.  Evolutionary history of two rare endemic conifer species from the eastern Qinghai-Tibet Plateau.

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5.  Changes in climate drive recent monarch butterfly dynamics.

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7.  Robust assessment of the expansion and retreat of Mediterranean climate in the 21st century.

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8.  Climate change may induce connectivity loss and mountaintop extinction in Central American forests.

Authors:  Lukas Baumbach; Dan L Warren; Rasoul Yousefpour; Marc Hanewinkel
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9.  Dramatic response to climate change in the Southwest: Robert Whittaker's 1963 Arizona Mountain plant transect revisited.

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10.  Phenological changes in the southern hemisphere.

Authors:  Lynda E Chambers; Res Altwegg; Christophe Barbraud; Phoebe Barnard; Linda J Beaumont; Robert J M Crawford; Joel M Durant; Lesley Hughes; Marie R Keatley; Matt Low; Patricia C Morellato; Elvira S Poloczanska; Valeria Ruoppolo; Ralph E T Vanstreels; Eric J Woehler; Anton C Wolfaardt
Journal:  PLoS One       Date:  2013-10-01       Impact factor: 3.240

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