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  4. A simplified permafrost-carbon model for long-term climate studies with the CLIMBER-2 coupled earth system model
 
research article

A simplified permafrost-carbon model for long-term climate studies with the CLIMBER-2 coupled earth system model

Crichton, K. A.
•
Roche, D. M.
•
Krinner, G.
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December 18, 2014
Geoscientific Model Development

We present the development and validation of a simplified permafrost-carbon mechanism for use with the land surface scheme operating in the CLIMBER-2 earth system model. The simplified model estimates the permafrost fraction of each grid cell according to the balance between modelled cold (below 0 °C) and warm (above 0 °C) days in a year. Areas diagnosed as permafrost are assigned a reduction in soil decomposition rate, thus creating a slow accumulating soil carbon pool. In warming climates, permafrost extent reduces and soil decomposition rates increase, resulting in soil carbon release to the atmosphere. Four accumulation/decomposition rate settings are retained for experiments within the CLIMBER-2(P) model, which are tuned to agree with estimates of total land carbon stocks today and at the last glacial maximum. The distribution of this permafrost-carbon pool is in broad agreement with measurement data for soil carbon content. The level of complexity of the permafrost-carbon model is comparable to other components in the CLIMBER-2 earth system model. © Author(s) 2014.

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Type
research article
DOI
10.5194/gmd-7-3111-2014
Web of Science ID

WOS:000355994400008

Author(s)
Crichton, K. A.
Roche, D. M.
Krinner, G.
Chappellaz, J.  
Date Issued

2014-12-18

Publisher

Copernicus GmbH

Published in
Geoscientific Model Development
Volume

7

Issue

6

Start page

3111

End page

3134

Subjects

cell organelle

•

decomposition

•

measurement method

•

numerical model

•

permafrost

•

soil carbon

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
SENSE  
Available on Infoscience
November 23, 2022
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/192565
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