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Impact of COVID-19 type events on the economy and climate under the stochastic DICE model

The classical DICE model is a widely accepted integrated assessment model for the joint modeling of economic and climate systems, where all model state variables evolve over time deterministically. We reformulate and solve the DICE model as an optimal control dynamic programming problem with six sta...

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Autores principales: Shevchenko, Pavel V., Murakami, Daisuke, Matsui, Tomoko, Myrvoll, Tor A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Japan 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8602010/
http://dx.doi.org/10.1007/s10018-021-00332-8
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author Shevchenko, Pavel V.
Murakami, Daisuke
Matsui, Tomoko
Myrvoll, Tor A.
author_facet Shevchenko, Pavel V.
Murakami, Daisuke
Matsui, Tomoko
Myrvoll, Tor A.
author_sort Shevchenko, Pavel V.
collection PubMed
description The classical DICE model is a widely accepted integrated assessment model for the joint modeling of economic and climate systems, where all model state variables evolve over time deterministically. We reformulate and solve the DICE model as an optimal control dynamic programming problem with six state variables (related to the carbon concentration, temperature, and economic capital) evolving over time deterministically and affected by two controls (carbon emission mitigation rate and consumption). We then extend the model by adding a discrete stochastic shock variable to model the economy in the stressed and normal regimes as a jump process caused by events, such as the COVID-19 pandemic. These shocks reduce the world gross output leading to a reduction in both the world net output and carbon emission. The extended model is solved under several scenarios as an optimal stochastic control problem, assuming that the shock events occur randomly on average once every 100 years and last for 5 years. The results show that, if the world gross output recovers in full after each event, the impact of the COVID-19 events on the temperature and carbon concentration will be immaterial even in the case of a conservative 10% drop in the annual gross output over a 5-year period. The impact becomes noticeable, although still extremely small (long-term temperature drops by [Formula: see text] ), in a presence of persistent shocks of a 5% output drop propagating to the subsequent time periods through the recursively reduced productivity. If the deterministic DICE model policy is applied in a presence of stochastic shocks (i.e., when this policy is suboptimal), then the drop in temperature is larger (approximately [Formula: see text] ), that is, the lower economic activities owing to shocks imply that more ambitious mitigation targets are now feasible at lower costs.
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spelling pubmed-86020102021-11-19 Impact of COVID-19 type events on the economy and climate under the stochastic DICE model Shevchenko, Pavel V. Murakami, Daisuke Matsui, Tomoko Myrvoll, Tor A. Environ Econ Policy Stud Research Article The classical DICE model is a widely accepted integrated assessment model for the joint modeling of economic and climate systems, where all model state variables evolve over time deterministically. We reformulate and solve the DICE model as an optimal control dynamic programming problem with six state variables (related to the carbon concentration, temperature, and economic capital) evolving over time deterministically and affected by two controls (carbon emission mitigation rate and consumption). We then extend the model by adding a discrete stochastic shock variable to model the economy in the stressed and normal regimes as a jump process caused by events, such as the COVID-19 pandemic. These shocks reduce the world gross output leading to a reduction in both the world net output and carbon emission. The extended model is solved under several scenarios as an optimal stochastic control problem, assuming that the shock events occur randomly on average once every 100 years and last for 5 years. The results show that, if the world gross output recovers in full after each event, the impact of the COVID-19 events on the temperature and carbon concentration will be immaterial even in the case of a conservative 10% drop in the annual gross output over a 5-year period. The impact becomes noticeable, although still extremely small (long-term temperature drops by [Formula: see text] ), in a presence of persistent shocks of a 5% output drop propagating to the subsequent time periods through the recursively reduced productivity. If the deterministic DICE model policy is applied in a presence of stochastic shocks (i.e., when this policy is suboptimal), then the drop in temperature is larger (approximately [Formula: see text] ), that is, the lower economic activities owing to shocks imply that more ambitious mitigation targets are now feasible at lower costs. Springer Japan 2021-11-19 2022 /pmc/articles/PMC8602010/ http://dx.doi.org/10.1007/s10018-021-00332-8 Text en © Society for Environmental Economics and Policy Studies 2021 This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Research Article
Shevchenko, Pavel V.
Murakami, Daisuke
Matsui, Tomoko
Myrvoll, Tor A.
Impact of COVID-19 type events on the economy and climate under the stochastic DICE model
title Impact of COVID-19 type events on the economy and climate under the stochastic DICE model
title_full Impact of COVID-19 type events on the economy and climate under the stochastic DICE model
title_fullStr Impact of COVID-19 type events on the economy and climate under the stochastic DICE model
title_full_unstemmed Impact of COVID-19 type events on the economy and climate under the stochastic DICE model
title_short Impact of COVID-19 type events on the economy and climate under the stochastic DICE model
title_sort impact of covid-19 type events on the economy and climate under the stochastic dice model
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8602010/
http://dx.doi.org/10.1007/s10018-021-00332-8
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