First assessment of the earth heat inventory within CMIP5 historical simulations

The energy imbalance at the top of the atmosphere over the last century has caused an accumulation of heat within the ocean, the continental subsurface, the atmosphere and the cryosphere. Although ∼90 % of the energy gained by the climate system has been stored in the ocean, the other components of...

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Main Authors: Cuesta-Valero, F.J., García-García, Almudena, Beltrami, H., Finnis, J.
Format: Article in Journal/Newspaper
Language:English
Published: Copernicus Publications 2021
Subjects:
Ice
Online Access:https://www.ufz.de/index.php?en=20939&ufzPublicationIdentifier=24727
https://doi.org/10.5194/esd-12-581-2021
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spelling ftufz:oai:ufz.de:24727 2023-12-10T09:49:32+01:00 First assessment of the earth heat inventory within CMIP5 historical simulations Cuesta-Valero, F.J. García-García, Almudena Beltrami, H. Finnis, J. 2021-05-10 application/pdf https://www.ufz.de/index.php?en=20939&ufzPublicationIdentifier=24727 https://doi.org/10.5194/esd-12-581-2021 en eng Copernicus Publications Earth System Dynamics 12 (2);; 581 - 600 https://doi.org/10.26050/WDCC/GCOS_EHI_EXP_v2 https://www.ufz.de/index.php?en=20939&ufzPublicationIdentifier=24727 https://dx.doi.org/10.5194/esd-12-581-2021 info:eu-repo/semantics/openAccess ISSN: 2190-4979 info:eu-repo/semantics/article https://purl.org/dc/dcmitype/Text 2021 ftufz https://doi.org/10.5194/esd-12-581-202110.26050/WDCC/GCOS_EHI_EXP_v2 2023-11-12T23:36:44Z The energy imbalance at the top of the atmosphere over the last century has caused an accumulation of heat within the ocean, the continental subsurface, the atmosphere and the cryosphere. Although ∼90 % of the energy gained by the climate system has been stored in the ocean, the other components of the Earth heat inventory cannot be neglected due to their influence on associated climate processes dependent on heat storage, such as sea level rise and permafrost stability. However, there has not been a comprehensive assessment of the heat inventory within global climate simulations yet. Here, we explore the ability of 30 advanced general circulation models (GCMs) from the fifth phase of the Coupled Model Intercomparison Project (CMIP5) to simulate the distribution of heat within the Earth's energy reservoirs for the period 1972–2005 of the Common Era. CMIP5 GCMs simulate an average heat storage of 247±172 ZJ (96±4 % of total heat content) in the ocean, 5±9 ZJ (2±3 %) in the continental subsurface, 2±3 ZJ (1±1 %) in the cryosphere and 2±2 ZJ (1±1 %) in the atmosphere. However, the CMIP5 ensemble overestimates the ocean heat content by 83 ZJ and underestimates the continental heat storage by 9 ZJ and the cryosphere heat content by 5 ZJ, in comparison with recent observations. The representation of terrestrial ice masses and the continental subsurface, as well as the response of each model to the external forcing, should be improved in order to obtain better representations of the Earth heat inventory and the partition of heat among climate subsystems in global transient climate simulations. Article in Journal/Newspaper Ice permafrost UFZ - Publication Index (Helmholtz-Centre for Environmental Research)
institution Open Polar
collection UFZ - Publication Index (Helmholtz-Centre for Environmental Research)
op_collection_id ftufz
language English
description The energy imbalance at the top of the atmosphere over the last century has caused an accumulation of heat within the ocean, the continental subsurface, the atmosphere and the cryosphere. Although ∼90 % of the energy gained by the climate system has been stored in the ocean, the other components of the Earth heat inventory cannot be neglected due to their influence on associated climate processes dependent on heat storage, such as sea level rise and permafrost stability. However, there has not been a comprehensive assessment of the heat inventory within global climate simulations yet. Here, we explore the ability of 30 advanced general circulation models (GCMs) from the fifth phase of the Coupled Model Intercomparison Project (CMIP5) to simulate the distribution of heat within the Earth's energy reservoirs for the period 1972–2005 of the Common Era. CMIP5 GCMs simulate an average heat storage of 247±172 ZJ (96±4 % of total heat content) in the ocean, 5±9 ZJ (2±3 %) in the continental subsurface, 2±3 ZJ (1±1 %) in the cryosphere and 2±2 ZJ (1±1 %) in the atmosphere. However, the CMIP5 ensemble overestimates the ocean heat content by 83 ZJ and underestimates the continental heat storage by 9 ZJ and the cryosphere heat content by 5 ZJ, in comparison with recent observations. The representation of terrestrial ice masses and the continental subsurface, as well as the response of each model to the external forcing, should be improved in order to obtain better representations of the Earth heat inventory and the partition of heat among climate subsystems in global transient climate simulations.
format Article in Journal/Newspaper
author Cuesta-Valero, F.J.
García-García, Almudena
Beltrami, H.
Finnis, J.
spellingShingle Cuesta-Valero, F.J.
García-García, Almudena
Beltrami, H.
Finnis, J.
First assessment of the earth heat inventory within CMIP5 historical simulations
author_facet Cuesta-Valero, F.J.
García-García, Almudena
Beltrami, H.
Finnis, J.
author_sort Cuesta-Valero, F.J.
title First assessment of the earth heat inventory within CMIP5 historical simulations
title_short First assessment of the earth heat inventory within CMIP5 historical simulations
title_full First assessment of the earth heat inventory within CMIP5 historical simulations
title_fullStr First assessment of the earth heat inventory within CMIP5 historical simulations
title_full_unstemmed First assessment of the earth heat inventory within CMIP5 historical simulations
title_sort first assessment of the earth heat inventory within cmip5 historical simulations
publisher Copernicus Publications
publishDate 2021
url https://www.ufz.de/index.php?en=20939&ufzPublicationIdentifier=24727
https://doi.org/10.5194/esd-12-581-2021
genre Ice
permafrost
genre_facet Ice
permafrost
op_source ISSN: 2190-4979
op_relation https://doi.org/10.26050/WDCC/GCOS_EHI_EXP_v2
https://www.ufz.de/index.php?en=20939&ufzPublicationIdentifier=24727
https://dx.doi.org/10.5194/esd-12-581-2021
op_rights info:eu-repo/semantics/openAccess
op_doi https://doi.org/10.5194/esd-12-581-202110.26050/WDCC/GCOS_EHI_EXP_v2
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