On linking an Earth system model to the equilibrium carbon representation of an economically optimizing land use model

被引:27
作者
Bond-Lamberty, B. [1 ]
Calvin, K. [1 ]
Jones, A. D. [2 ]
Mao, J. [3 ]
Patel, P. [1 ]
Shi, X. Y. [3 ]
Thomson, A. [1 ]
Thornton, P. [3 ]
Zhou, Y. [1 ]
机构
[1] Pacific NW Natl Lab, Joint Global Change Res Inst, College Pk, MD 20740 USA
[2] Univ Calif Berkeley, Lawrence Berkeley Natl Lab, Berkeley, CA 94720 USA
[3] Oak Ridge Natl Lab, Div Environm Sci, Oak Ridge, TN 37831 USA
基金
美国国家科学基金会;
关键词
ATMOSPHERE-OCEAN; CLIMATE-CHANGE; SIMPLER MODEL; CYCLE MODELS; COVER CHANGE; CO2; UNCERTAINTIES; PRODUCTIVITY; HISTORY; STORAGE;
D O I
10.5194/gmd-7-2545-2014
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Human activities are significantly altering biogeochemical cycles at the global scale, and the scope of these activities will change with both future climate and socioeconomic decisions. This poses a significant challenge for Earth system models (ESMs), which can incorporate land use change as prescribed inputs but do not actively simulate the policy or economic forces that drive land use change. One option to address this problem is to couple an ESM with an economically oriented integrated assessment model, but this is challenging because of the radically different goals and underpinnings of each type of model. This study describes the development and testing of a coupling between the terrestrial carbon cycle of an ESM (CESM) and an integrated assessment (GCAM) model, focusing on how CESM climate effects on the carbon cycle could be shared with GCAM. We examine the best proxy variables to share between the models, and we quantify how carbon flux changes driven by climate, CO2 fertilization, and land use changes (e.g., deforestation) can be distinguished from each other by GCAM. The net primary production and heterotrophic respiration outputs of the Community Land Model (CLM), the land component of CESM, were found to be the most robust proxy variables by which to recalculate GCAM's assumptions of equilibrium ecosystem steady-state carbon. Carbon cycle effects of land use change are spatially limited relative to climate effects, and thus we were able to distinguish these effects successfully in the model coupling, passing only the latter to GCAM. This paper does not present results of a fully coupled simulation but shows, using a series of offline CLM simulations and an additional idealized Monte Carlo simulation, that our CESM-GCAM proxy variables reflect the phenomena that we intend and do not contain erroneous signals due to land use change. By allowing climate effects from a full ESM to dynamically modulate the economic and policy decisions of an integrated assessment model, this work will help link these models in a robust and flexible framework capable of examining two-way interactions between human and Earth system processes.
引用
收藏
页码:2545 / 2555
页数:11
相关论文
共 63 条
[1]   Ecosystem carbon dioxide fluxes after disturbance in forests of North America [J].
Amiro, B. D. ;
Barr, A. G. ;
Barr, J. G. ;
Black, T. A. ;
Bracho, R. ;
Brown, M. ;
Chen, J. ;
Clark, K. L. ;
Davis, K. J. ;
Desai, A. R. ;
Dore, S. ;
Engel, V. ;
Fuentes, J. D. ;
Goldstein, A. H. ;
Goulden, M. L. ;
Kolb, T. E. ;
Lavigne, M. B. ;
Law, B. E. ;
Margolis, H. A. ;
Martin, T. ;
McCaughey, J. H. ;
Misson, L. ;
Montes-Helu, M. ;
Noormets, A. ;
Randerson, J. T. ;
Starr, G. ;
Xiao, J. .
JOURNAL OF GEOPHYSICAL RESEARCH-BIOGEOSCIENCES, 2010, 115
[2]   Uncertainties in the 20th century carbon budget associated with land use change [J].
Arora, V. K. ;
Boer, G. J. .
GLOBAL CHANGE BIOLOGY, 2010, 16 (12) :3327-3348
[3]  
Bonan GB, 2002, J CLIMATE, V15, P3123, DOI 10.1175/1520-0442(2002)015<3123:TLSCOT>2.0.CO
[4]  
2
[5]   EFFECTS OF BOREAL FOREST VEGETATION ON GLOBAL CLIMATE [J].
BONAN, GB ;
POLLARD, D ;
THOMPSON, SL .
NATURE, 1992, 359 (6397) :716-718
[6]   Forests and climate change: Forcings, feedbacks, and the climate benefits of forests [J].
Bonan, Gordon B. .
SCIENCE, 2008, 320 (5882) :1444-1449
[7]   Effect of Anthropogenic Land-Use and Land-Cover Changes on Climate and Land Carbon Storage in CMIP5 Projections for the Twenty-First Century [J].
Brovkin, V. ;
Boysen, L. ;
Arora, V. K. ;
Boisier, J. P. ;
Cadule, P. ;
Chini, L. ;
Claussen, M. ;
Friedlingstein, P. ;
Gayler, V. ;
van den Hurk, B. J. J. M. ;
Hurtt, G. C. ;
Jones, C. D. ;
Kato, E. ;
de Noblet-Ducoudre, N. ;
Pacifico, F. ;
Pongratz, J. ;
Weiss, M. .
JOURNAL OF CLIMATE, 2013, 26 (18) :6859-6881
[8]   2.6: Limiting, climate change to 450 ppm CO2 equivalent in the 21st century [J].
Calvin, Katherine ;
Edmonds, James ;
Bond-Lamberty, Ben ;
Clarke, Leon ;
Kim, Son H. ;
Kyle, Page ;
Smith, Steven J. ;
Thomson, Allison ;
Wise, Marshall .
ENERGY ECONOMICS, 2009, 31 :S107-S120
[9]   Contributions of land-use history to carbon accumulation in US forests [J].
Caspersen, JP ;
Pacala, SW ;
Jenkins, JC ;
Hurtt, GC ;
Moorcroft, PR ;
Birdsey, RA .
SCIENCE, 2000, 290 (5494) :1148-1151
[10]   THE IDENTIFICATION OF MULTIPLE OUTLIERS [J].
DAVIES, L ;
GATHER, U .
JOURNAL OF THE AMERICAN STATISTICAL ASSOCIATION, 1993, 88 (423) :782-792