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![]() Climate change: 50 years past and possible futures NASA-GSFC NEWS RELEASE Posted: September 21, 2002 A new NASA-funded study used a computer climate model to simulate the last 50 years of climate changes, projects warming over the next 50 years regardless of whether or not nations curb their greenhouse gas (GHG) emissions soon. If no emission reductions are made and they continue to increase at the current rate, global temperatures may increase by 1-2 deg Celsius (1.8 deg - 3.6 deg Fahrenheit). But if the growth rate of carbon dioxide does not exceed its current rate and if the growth of true air pollutants (things that are harmful to human health) is reversed, temperatures may rise by only 0.75C (1.35F).
The GISS "SI2000" climate model provided a convincing demonstration that global temperature change of the past half-century is mainly a response to climate forcing agents, or imposed perturbations of the Earth's energy balance. This is especially true of human-made forcings, such as carbon dioxide and methane, which trap the Earth's heat radiation as a blanket traps body heat; thus they cause warming. The computer model's ability to simulate the past 50 years of global temperature change provided confidence in understanding the causes behind climate changes that have occurred over that time period. The sensitivity of the "SI2000" model to a climate forcing is comparable to that of other climate computer models. Model results from 1951-2000 are in close agreement with observed changes; the surface has warmed by about .5 deg C (0.9 deg F) while the upper atmosphere (10-15 mile altitudes) has cooled by about 1 deg C (1.8 deg F). The climate model was then used to simulate global temperature change during the next 50 years, under two contrasting assumptions for future growth of human-made forcings. The first assumption for the emissions of GHGs is the "business-as-usual" scenario where GHGs continue to increase rapidly. This scenario leads to an accelerating rate of global warming, raising global temperature to levels that have not existed during the past several hundred thousand years. In the "alternative" scenario, in which air pollution is decreased and fossil fuel CO2 emissions are stabilized, further global warming is limited to 0.75 deg C (1.35 deg F) in the next 50 years. Hansen cautioned that the 'alternative' scenario will not be easy to achieve. It requires that the world begin to reverse the growth of true air pollution (especially 'soot' and the gases that control surface ozone, including methane) and also that we flatten out and eventually begin to decrease CO2 emissions.
Achievement of stable CO2 emissions, as required in the alternative scenario that yields minimal climate change, it is likely to require some combination of increased energy efficiencies, a growing role for renewable energies, capture and sequestration of CO2 emissions, and/or increased use of nuclear power. All of these possibilities are being addressed by the National Climate Change Technology Initiative. "Decision-makers, including the public, may need to consider all of these options as climate change becomes more apparent and as our understanding of the climate forcing agents improves," Hansen said. "Halting and reversing the growth of air pollution is possible with existing and developing technologies. It would have other benefits, especially for human health and agricultural productivity." This research was funded by NASA, and appears in the next issue of the Journal of Geophysical Research--Atmospheres. The paper,"Climate forcings in Goddard Institute for Space Studies
SI2000 simulations," (37 pages) appears in the Journal of
Geophysical Research - Atmospheres this month. Journalists may
obtain a copy by pdf or fax on request to Emily Crum,
ecrum@agu.org. Please provide your name, name of publication,
address, phone, fax, and email address. It is not embargoed.
Citation: Hansen, J., et al., Climate forcings in Goddard Institute
for Space Studies SI2000 simulations, J. Geophys. Res., 107(D18),
4347, doi:10.1029/2001JD001143, 2002.
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