Energy Exascale Earth System Model

First release of version 2.1 of the Energy Exascale Earth System Model. The atmosphere component remains EAM. There are no major changes in the default configuration since 2.0. New features include: A semi-lagrangian tracer transport for theta-l dycore, a new algorithm for finding the tropopause, ne...

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Main Author: Project, E3SM
Format: Other/Unknown Material
Language:unknown
Published: Zenodo 2023
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Online Access:https://doi.org/10.5281/zenodo.7527568
https://doi.org/10.11578/E3SM/dc.20230110.5
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spelling ftzenodo:oai:zenodo.org:7527568 2024-09-15T18:10:05+00:00 Energy Exascale Earth System Model Project, E3SM 2023-01-12 https://doi.org/10.5281/zenodo.7527568 https://doi.org/10.11578/E3SM/dc.20230110.5 unknown Zenodo https://doi.org/10.5281/zenodo.1227335 https://doi.org/10.5281/zenodo.7527568 oai:zenodo.org:7527568 https://doi.org/10.11578/E3SM/dc.20230110.5 info:eu-repo/semantics/openAccess BSD 3-Clause "New" or "Revised" License https://opensource.org/licenses/BSD-3-Clause info:eu-repo/semantics/other 2023 ftzenodo https://doi.org/10.5281/zenodo.752756810.11578/E3SM/dc.20230110.510.5281/zenodo.1227335 2024-07-27T07:41:34Z First release of version 2.1 of the Energy Exascale Earth System Model. The atmosphere component remains EAM. There are no major changes in the default configuration since 2.0. New features include: A semi-lagrangian tracer transport for theta-l dycore, a new algorithm for finding the tropopause, new RRM mesh configurations. Add and update SSP370 and SSP585 cases. Restore the FIDEAL case. The land component is ELM. There are no major changes in the default configuration since 2.0. Several option features have been added including: implementation of topography-based subgrid structure (topounits) and accompanying parameterizations and atmospheric forcing downscaling methods; a new plant hydraulics scheme; two-way land-river hydrological coupling through the infiltration of floodplain water; an implementation of perennial crops; updates to the SNICAR-AD snow radiative transfer model; and implementation of soil erosion and sediment yield in ELM-Erosion. Each of these new changes is modular in design and can be turned on or off as the user specifies; they are currently being tested in different "BGC" configurations. The ocean component remains MPAS-Ocean. Major change since version 2.0 include the addition of the Fox-Kemper et al. 2011 parameterization for submesocale eddies, a correction for barotropic thickness consistency that reduces divergence noise, and the addition of an ocean carbon conservation analysis member. The sea-ice component remains MPAS-Seaice. Major changes since version 2.0 include: A correction to how shortwave parameters are interpolated in the snicar-ad 5-band radiation scheme, the addition of a sea ice carbon conservation analysis member, updates to the default sea ice biogeochemistry namelist parameters to be consistent with version 2.0 improvements to nitrogen cycling and a correction in the ice-ocean dissolved organic nitrogen coupling. The land-ice component remains MPAS-Albany-landIce (MALI). Major changes since 2.0 include an update to the MALI version and the Greenland mesh. The river ... Other/Unknown Material Greenland Sea ice Zenodo
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description First release of version 2.1 of the Energy Exascale Earth System Model. The atmosphere component remains EAM. There are no major changes in the default configuration since 2.0. New features include: A semi-lagrangian tracer transport for theta-l dycore, a new algorithm for finding the tropopause, new RRM mesh configurations. Add and update SSP370 and SSP585 cases. Restore the FIDEAL case. The land component is ELM. There are no major changes in the default configuration since 2.0. Several option features have been added including: implementation of topography-based subgrid structure (topounits) and accompanying parameterizations and atmospheric forcing downscaling methods; a new plant hydraulics scheme; two-way land-river hydrological coupling through the infiltration of floodplain water; an implementation of perennial crops; updates to the SNICAR-AD snow radiative transfer model; and implementation of soil erosion and sediment yield in ELM-Erosion. Each of these new changes is modular in design and can be turned on or off as the user specifies; they are currently being tested in different "BGC" configurations. The ocean component remains MPAS-Ocean. Major change since version 2.0 include the addition of the Fox-Kemper et al. 2011 parameterization for submesocale eddies, a correction for barotropic thickness consistency that reduces divergence noise, and the addition of an ocean carbon conservation analysis member. The sea-ice component remains MPAS-Seaice. Major changes since version 2.0 include: A correction to how shortwave parameters are interpolated in the snicar-ad 5-band radiation scheme, the addition of a sea ice carbon conservation analysis member, updates to the default sea ice biogeochemistry namelist parameters to be consistent with version 2.0 improvements to nitrogen cycling and a correction in the ice-ocean dissolved organic nitrogen coupling. The land-ice component remains MPAS-Albany-landIce (MALI). Major changes since 2.0 include an update to the MALI version and the Greenland mesh. The river ...
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author Project, E3SM
spellingShingle Project, E3SM
Energy Exascale Earth System Model
author_facet Project, E3SM
author_sort Project, E3SM
title Energy Exascale Earth System Model
title_short Energy Exascale Earth System Model
title_full Energy Exascale Earth System Model
title_fullStr Energy Exascale Earth System Model
title_full_unstemmed Energy Exascale Earth System Model
title_sort energy exascale earth system model
publisher Zenodo
publishDate 2023
url https://doi.org/10.5281/zenodo.7527568
https://doi.org/10.11578/E3SM/dc.20230110.5
genre Greenland
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op_rights info:eu-repo/semantics/openAccess
BSD 3-Clause "New" or "Revised" License
https://opensource.org/licenses/BSD-3-Clause
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