G2TT
来源类型Book Section
DOI10.1016/B978-0-444-41766-4.50026-6
Modeling the impact of large-scale energy conversion systems on global climate.
Williams J; Bach, W.; Pankrath, J.; Kellogg, W.
发表日期1979
出处Man's Impact on Climate. Eds. Bach, W. , Pankrath, J. & Kellogg, W. , pp. 253-267 New York, USA: Elsevier/North Holland. ISBN 978-0-444-41766-4 DOI: 10.1016/B978-0-444-41766-4.50026-6 .
出版年1979
语种英语
摘要There are three energy options which could satisfy a projected energy requirement of about 30 TW and these are the solar, nuclear and (to a lesser extent) coal options. Climate models can be used to assess the impacts of large scale deployment of these options. The impact of waste heat has been assessed using energy balance models and general circulation models (GCMs). Results suggest that the impacts are significant when the heat input is very high and studies of more realistic scenarios are required. Energy balance models, radiative-convective models and a GCM have been used to study the impact of doubling the atmospheric CO2 concentration. State-of-the-art models estimate a surface temperature increase of 1.5-3.0°C with large amplification near the poles, but much uncertainty remains. Very few model studies have been made of the impact of particles on global climate, more information on the characteristics of particle input are required. The impact of large-scale deployment of solar energy conversion systems has received little attention but model studies suggest that large scale changes in surface characteristics associated with such systems (surface heat balance, roughness and hydrological characteristics and ocean surface temperatures) could have significant global climatic effects.
主题Resources and Environment Area (REN)
URLhttp://pure.iiasa.ac.at/id/eprint/12392/
来源智库International Institute for Applied Systems Analysis (Austria)
引用统计
资源类型智库出版物
条目标识符http://119.78.100.153/handle/2XGU8XDN/132899
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GB/T 7714
Williams J,Bach, W.,Pankrath, J.,et al. Modeling the impact of large-scale energy conversion systems on global climate.. 1979.
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