Heat stress, labor productivity, and economic impacts: analysis of climate change impacts using two-way coupled modeling

被引:19
作者
Matsumoto, Ken'ichi [1 ,2 ]
Tachiiri, Kaoru [2 ]
Su, Xuaming [2 ]
机构
[1] Toyo Univ, Fac Econ, Bunkyo Ku, 5-28-20 Hakusan, Tokyo 1128606, Japan
[2] Japan Agcy Marine Earth Sci & Technol, Res Inst Global Change, Kanazawa Ku, 3173-25 Showa Machi, Yokohama, Kanagawa 2360001, Japan
来源
ENVIRONMENTAL RESEARCH COMMUNICATIONS | 2021年 / 3卷 / 12期
关键词
model coupling; computable general equilibrium model; earth system model of intermediate complexity; climate change; heat stress; economic impact; ECOSYSTEM SERVICES; TEMPERATURE; POLICY; ADAPTATION; PATHWAY; OPTIONS; HEALTH; DAMAGE; CHINA; COST;
D O I
10.1088/2515-7620/ac3e14
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Climate change affects various fundamental human activities, and understanding the consequences of its impacts is essential. Among them, heat stress considerably affects economic conditions. Furthermore, when analyzing the socioeconomic impacts of climate change, both socioeconomic and climate systems must be considered simultaneously, though such studies are scarce. This study aimed to evaluate the socioeconomic impacts of changes in labor productivity due to heat stress (measured by wet bulb globe temperature) under various climate change scenarios through a new modeling framework that coupled a computable general equilibrium model and an Earth system model of intermediate complexity to realize the interactions between the two systems through the relationship between heat stress and labor productivity. Results indicated that labor productivity declined as climate change progressed (particularly in hot and humid regions), driving a gradual decline in total global gross domestic product (GDP). Although regional GDP largely decreased where labor productivity considerably declined, it slightly increased in some areas because of a comparative advantage brought about by the difference in the impact on labor productivity by region. Consequently, carbon dioxide (CO2) emissions and concentrations and the resulting temperature were slightly reduced when examining the impact of climate change on labor productivity. These tendencies were similar in both business-as-usual and climate change mitigation scenarios, but the overall impacts were smaller under the latter. There was a limited impact on CO2 emissions, CO2 concentrations, and temperature via integrated socioeconomic and climate systems. However, this study focused on only a single channel of the various interactions between the two systems. For a more complete evaluation of the impacts of climate change, further development of the integrated model is required.
引用
收藏
页数:13
相关论文
共 66 条
[11]  
Center for International Earth Science Information Network, 2018, GRIDD POP WORLD VERS
[12]   Quantifying economic impacts of climate change under nine future emission scenarios within CMIP6 [J].
Chen, Yating ;
Liu, Aobo ;
Cheng, Xiao .
SCIENCE OF THE TOTAL ENVIRONMENT, 2020, 703 (703)
[13]  
Chen YHH., 2015, MIT JOINT PROGRAM SC, V278, P1
[14]   Earth system models of intermediate complexity: closing the gap in the spectrum of climate system models [J].
Claussen, M ;
Mysak, LA ;
Weaver, AJ ;
Crucifix, M ;
Fichefet, T ;
Loutre, MF ;
Weber, SL ;
Alcamo, J ;
Alexeev, VA ;
Berger, A ;
Calov, R ;
Ganopolski, A ;
Goosse, H ;
Lohmann, G ;
Lunkeit, F ;
Mokhov, II ;
Petoukhov, V ;
Stone, P ;
Wang, Z .
CLIMATE DYNAMICS, 2002, 18 (07) :579-586
[15]   Temperature and humidity based projections of a rapid rise in global heat stress exposure during the 21st century [J].
Coffel, Ethan D. ;
Horton, Radley M. ;
de Sherbinin, Alex .
ENVIRONMENTAL RESEARCH LETTERS, 2018, 13 (01)
[16]   The integrated Earth system model version 1: formulation and functionality [J].
Collins, W. D. ;
Craig, A. P. ;
Truesdale, J. E. ;
Di Vittorio, A. V. ;
Jones, A. D. ;
Bond-Lamberty, B. ;
Calvin, K. V. ;
Edmonds, J. A. ;
Kim, S. H. ;
Thomson, A. M. ;
Patel, P. ;
Zhou, Y. ;
Mao, J. ;
Shi, X. ;
Thornton, P. E. ;
Chini, L. P. ;
Hurtt, G. C. .
GEOSCIENTIFIC MODEL DEVELOPMENT, 2015, 8 (07) :2203-2219
[17]  
Copernicus Climate Change Service, 2017, ERA5: Fifth generation of ECMWF atmospheric reanalyses of the global climate
[18]   The impact of climate change on aggregate output in middle- and high-income countries [J].
Doganlar, Murat ;
Mike, Faruk ;
Kizilkaya, Oktay .
AUSTRALIAN ECONOMIC PAPERS, 2022, 61 (01) :72-86
[19]   Temperature shocks and welfare costs [J].
Donadelli, M. ;
Jueppner, M. ;
Riedel, M. ;
Schlag, C. .
JOURNAL OF ECONOMIC DYNAMICS & CONTROL, 2017, 82 :331-355
[20]   Reductions in labour capacity from heat stress under climate warming [J].
Dunne, John P. ;
Stouffer, Ronald J. ;
John, Jasmin G. .
NATURE CLIMATE CHANGE, 2013, 3 (06) :563-566