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1.
Nature ; 463(7282): 747-56, 2010 Feb 11.
Artículo en Inglés | MEDLINE | ID: mdl-20148028

RESUMEN

Advances in the science and observation of climate change are providing a clearer understanding of the inherent variability of Earth's climate system and its likely response to human and natural influences. The implications of climate change for the environment and society will depend not only on the response of the Earth system to changes in radiative forcings, but also on how humankind responds through changes in technology, economies, lifestyle and policy. Extensive uncertainties exist in future forcings of and responses to climate change, necessitating the use of scenarios of the future to explore the potential consequences of different response options. To date, such scenarios have not adequately examined crucial possibilities, such as climate change mitigation and adaptation, and have relied on research processes that slowed the exchange of information among physical, biological and social scientists. Here we describe a new process for creating plausible scenarios to investigate some of the most challenging and important questions about climate change confronting the global community.


Asunto(s)
Ecología/tendencias , Calentamiento Global , Calentamiento Global/prevención & control , Calentamiento Global/estadística & datos numéricos , Actividades Humanas , Medición de Riesgo , Emisiones de Vehículos
2.
Philos Trans A Math Phys Eng Sci ; 364(1845): 2117-33, 2006 Aug 15.
Artículo en Inglés | MEDLINE | ID: mdl-16844651

RESUMEN

A recent assessment by the intergovernmental panel on climate change concluded that the Earth's climate would be 2-6 degrees C warmer than in the pre-industrial era by the end of the twenty-first century, due to human-induced increases in greenhouse gases. In the absence of other changes, this would lead to the warmest period on Earth for at least the last 1000 years, and probably the last 100,000 years. The large-scale warming is expected to be accompanied by increased frequency and/or intensity of extreme events, such as heatwaves, heavy rainfall, storms and coastal flooding. There are also several possibilities that this large change could initiate nonlinear climate responses which lead to even more extreme and rapid (on the time-scale of decades) climate change, including the collapse of the ocean 'conveyor belt' circulation, the collapse of major ice sheets or the release of large amounts of methane in high latitudes leading to further global warming. Although these catastrophic events are much more speculative than the direct warming due to increased greenhouse gases, their potential impacts are great and therefore should be included in any risk assessment of the impacts of anthropogenic climate change.


Asunto(s)
Clima , Planificación en Desastres/métodos , Desastres/estadística & datos numéricos , Ambiente , Efecto Invernadero , Medición de Riesgo/métodos , Humanos , Internacionalidad , Factores de Riesgo
3.
In. Duplessy, J.C; Pons, A; Fantechi, R. Environment and quality of life : Climate and global change : Proceeding. Luxembourg, Commission of the European Communities, 1991. p.139-58, ilus, tab. (Environment and Quality of Life Series).
Monografía en En | Desastres | ID: des-5404

RESUMEN

physical basis of numerical modelling of climate is outlined, using atmospheric models as an example. The use and verification of climate models is described, illustrated with data from simulations made with meteorological office models (AU)


Asunto(s)
Cambio Climático , Atmósfera , Temperatura , Clima , Ambiente
4.
In. Duplessy, J.C; Pons, A; Fantechi, R. Environment and quality of life : Climate and global change : Proceeding. Luxembourg, Commission of the European Communities, 1991. p.159-96, ilus, mapas, tab. (Environment and Quality of Life Series).
Monografía en En | Desastres | ID: des-5405

RESUMEN

use of climate models to underfund and predict climate change is described, using examples from numerical studies of the effects f enhanced atmospheric CO2 (AU)


Asunto(s)
Cambio Climático , Atmósfera , Efecto Invernadero , Ambiente , Dióxido de Carbono , Clima
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