GCAM v5.1: representing the linkages between energy, water, land, climate, and economic systems
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Published:2019-02-15
Issue:2
Volume:12
Page:677-698
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ISSN:1991-9603
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Container-title:Geoscientific Model Development
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language:en
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Short-container-title:Geosci. Model Dev.
Author:
Calvin Katherine, Patel Pralit, Clarke Leon, Asrar Ghassem, Bond-Lamberty BenORCID, Cui Ryna Yiyun, Di Vittorio AlanORCID, Dorheim KalynORCID, Edmonds Jae, Hartin Corinne, Hejazi Mohamad, Horowitz Russell, Iyer Gokul, Kyle Page, Kim Sonny, Link RobertORCID, McJeon Haewon, Smith Steven J.ORCID, Snyder Abigail, Waldhoff Stephanie, Wise Marshall
Abstract
Abstract. This paper describes GCAM v5.1, an open source model that
represents the linkages between energy, water, land, climate, and economic
systems. GCAM is a market equilibrium model, is global in scope, and operates
from 1990 to 2100 in 5-year time steps. It can be used to examine, for
example, how changes in population, income, or technology cost might alter
crop production, energy demand, or water withdrawals, or how changes in one
region's demand for energy affect energy, water, and land in other regions.
This paper describes the model, including its assumptions, inputs, and
outputs. We then use 11 scenarios, varying the socioeconomic and climate
policy assumptions, to illustrate the results from the model. The resulting
scenarios demonstrate a wide range of potential future energy, water, and
land uses. We compare the results from GCAM v5.1 to historical data and to
future scenario simulations from earlier versions of GCAM and from other
models. Finally, we provide information on how to obtain the model.
Publisher
Copernicus GmbH
Reference87 articles.
1. Akimoto, K., Sano, F., Homma, T., Oda, J., Nagashima, M., and Kii, M.:
Estimates of GHG emission reduction potential by country, sector, and cost,
Energ. Policy, 38, 3384–3393, 2010. 2. Bauer, N., Rose, S. K., Fujimori, S., van Vuuren, D. P., Weyant, J., Wise,
M., Cui, Y., Daioglou, V., Gidden, M. J., Kato, E., Kitous, A., Leblanc, F.,
Sands, R., Sano, F., Strefler, J., Tsutsui, J., Bibas, R., Fricko, O.,
Hasegawa, T., Klein, D., Kurosawa, A., Mima, S., and Muratori, M.: Global
energy sector emission reductions and bioenergy use: overview of the
bioenergy demand phase of the EMF-33 model comparison, Clim. Change,
https://doi.org/10.1007/s10584-018-2226-y, online first, 2018. 3. Bond-Lamberty, B., Dorheim, K. R., Cui, Y., Horowitz, R. L., Snyder, A. C.,
Calvin, K. V., and Feng, L.: The gcamdata package: preparation, synthesis,
and tracking of input data for the GCAM integrated human-earth systems model,
J. Open Res. Softw., accepted, 2018. 4. Bond, T. C., Bhardwaj, E., Dong, R., Jogani, R., Jung, S., Roden, C.,
Streets, D. G., and Trautmann, N. M.: Historical emissions of black and
organic carbon aerosol from energy-related combustion, 1850–2000, Global
Biogeochem. Cy., 21, GB2018, https://doi.org/10.1029/2006GB002840, 2007. 5. Bosetti, V., Massetti, E., and Tavoni, M.: The Witch Model: Structure,
Baseline, Solutions, 12064, 1–56, 2007.
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