CMIP5 update of ‘Inter-model variability and biases of the global water cycle in CMIP3 coupled climate models’

In this addendum we show results of the climate model consistency test performed with the control runs of all CMIP5 models. We calculate the closure of the atmospheric moisture budget. As already explained in the original article and confirmed again with CMIP5 models, a few outlier models can exhibi...

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Main Authors: Beate G Liepert, Fiona Lo
Format: Article
Language:English
Published: IOP Publishing 2013-01-01
Series:Environmental Research Letters
Subjects:
Online Access:https://doi.org/10.1088/1748-9326/8/2/029401
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author Beate G Liepert
Fiona Lo
author_facet Beate G Liepert
Fiona Lo
author_sort Beate G Liepert
collection DOAJ
description In this addendum we show results of the climate model consistency test performed with the control runs of all CMIP5 models. We calculate the closure of the atmospheric moisture budget. As already explained in the original article and confirmed again with CMIP5 models, a few outlier models can exhibit significant biases, and changes over time of these biases, that distort the multi-model means of water cycle components. These biases in the control runs of climate models can also be regarded as artificial, non-radiative forcings and should hence be taken in consideration in applications. We stress the need for ‘consistency tests’ in addition to ‘reality checks’ (comparisons with observations) of climate models for improving future climate change predictions.
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spelling doaj.art-aa552786eafb445a9611140d6c6e195e2023-08-09T14:26:46ZengIOP PublishingEnvironmental Research Letters1748-93262013-01-018202940110.1088/1748-9326/8/2/029401CMIP5 update of ‘Inter-model variability and biases of the global water cycle in CMIP3 coupled climate models’Beate G Liepert0Fiona Lo1NorthWest Research Associates , 4118 148th Ave NE Redmond, WA 98052, USANorthWest Research Associates , 4118 148th Ave NE Redmond, WA 98052, USAIn this addendum we show results of the climate model consistency test performed with the control runs of all CMIP5 models. We calculate the closure of the atmospheric moisture budget. As already explained in the original article and confirmed again with CMIP5 models, a few outlier models can exhibit significant biases, and changes over time of these biases, that distort the multi-model means of water cycle components. These biases in the control runs of climate models can also be regarded as artificial, non-radiative forcings and should hence be taken in consideration in applications. We stress the need for ‘consistency tests’ in addition to ‘reality checks’ (comparisons with observations) of climate models for improving future climate change predictions.https://doi.org/10.1088/1748-9326/8/2/029401coupled climate modelswater cyclemetrics
spellingShingle Beate G Liepert
Fiona Lo
CMIP5 update of ‘Inter-model variability and biases of the global water cycle in CMIP3 coupled climate models’
Environmental Research Letters
coupled climate models
water cycle
metrics
title CMIP5 update of ‘Inter-model variability and biases of the global water cycle in CMIP3 coupled climate models’
title_full CMIP5 update of ‘Inter-model variability and biases of the global water cycle in CMIP3 coupled climate models’
title_fullStr CMIP5 update of ‘Inter-model variability and biases of the global water cycle in CMIP3 coupled climate models’
title_full_unstemmed CMIP5 update of ‘Inter-model variability and biases of the global water cycle in CMIP3 coupled climate models’
title_short CMIP5 update of ‘Inter-model variability and biases of the global water cycle in CMIP3 coupled climate models’
title_sort cmip5 update of inter model variability and biases of the global water cycle in cmip3 coupled climate models
topic coupled climate models
water cycle
metrics
url https://doi.org/10.1088/1748-9326/8/2/029401
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