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1. Identity statement
Reference TypeJournal Article
Siteplutao.sid.inpe.br
Holder Codeisadg {BR SPINPE} ibi 8JMKD3MGPCW/3DT298S
Identifier8JMKD3MGP3W/3MTN3KM
Repositorysid.inpe.br/plutao/2016/12.05.19.23.34
Last Update2016:12.09.11.37.06 (UTC) lattes
Metadata Repositorysid.inpe.br/plutao/2016/12.05.19.23.35
Metadata Last Update2021:01.02.03.53.08 (UTC) administrator
DOI10.5194/gmd-9-4185-2016
ISSN1991-959X
Labellattes: 6041333024387123 21 HaarsmaRVSBBCCFGVHKKLLLMMMNSSSSV:2016:HiReMo
Citation KeyHaarsmaRVSBBCCFGVHKKLLLMMMNSSSSV:2016:HiReMo
TitleHigh resolution model intercomparison project (HighResMIP v1.0) for CMIP6
Year2016
Access Date2024, Apr. 19
Type of Workjournal article
Secondary TypePRE PI
Number of Files1
Size572 KiB
2. Context
Author 1 Haarsma, Reindert J.
 2 Roberts, Malcolm J.
 3 Vidale, Pier Luigi
 4 Senior, Catherine A.
 5 Bellucci, Alessio
 6 Bao, Qing
 7 Chang, Ping
 8 Corti, Susanna
 9 Fuckar, Neven S.
10 Guemas, Virginie
11 Von Hardenberg, Jost
12 Hazeleger, Wilco
13 Kodama, Chihiro
14 Koenigk, Torben
15 Leung, L. Ruby
16 Lu, Jian
17 Luo, Jing-Jia
18 Mao, Jiafu
19 Mizielinski, Matthew S.
20 Mizuta, Ryo
21 Nobre, Paulo
22 Satoh, Masaki
23 Scoccimarro, Enrico
24 Semmler, Tido
25 Small, Justin
26 Von Storch, Jin-Song
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Affiliation 1 Royal Netherlands Meteorological Institute
 2 Met Office Hadley Centre
 3 University of Reading
 4 Met Office Hadley Centre
 5 Centro Euro-Mediterraneo per i Cambiamenti Climatici
 6 Chinese Academy of Sciences
 7 Texas A&M University
 8 National Research Council
 9 Barcelona Supercomputing Center
10 Barcelona Supercomputing Center
11 National Research Council
12 Royal Netherlands Meteorological Institute
13 Japan Agency for Marine-Earth Science and Technology
14 Swedish Meteorological and Hydrological Institute
15 Pacific Northwest National Laboratory
16 Pacific Northwest National Laboratory
17 Bureau of Meteorology
18 Oak Ridge National Laboratory
19 Met Office Hadley Centre
20 Meteorological Research Institute
21 Instituto Nacional de Pesquisas Espaciais (INPE)
22 The University of Tokyo
23 Centro Euro-Mediterraneo per i Cambiamenti Climatici
24 Helmholtz Centre for Polar and Marine Research
25 National Center for Atmospheric Researc
26 Istituto Nazionale di Geofisica e Vulcanologia
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JournalGeoscientific Model Development
Volume9
Number11
Pages4185-4208
History (UTC)2016-12-05 19:23:35 :: lattes -> administrator ::
2016-12-09 11:30:25 :: administrator -> lattes :: 2016
2016-12-09 11:37:06 :: lattes -> administrator :: 2016
2021-01-02 03:53:08 :: administrator -> simone :: 2016
3. Content and structure
Is the master or a copy?is the master
Content Stagecompleted
Transferable1
Content TypeExternal Contribution
Version Typepublisher
AbstractRobust projections and predictions of climate variability and change, particularly at regional scales, rely on the driving processes being represented with fidelity in model simulations. The role of enhanced horizontal resolution in improved process representation in all components of the climate system is of growing interest, particularly as some recent simulations suggest both the possibility of significant changes in large-scale aspects of circulation as well as improvements in small-scale processes and extremes. However, such high-resolution global simulations at climate timescales, with resolutions of at least 50 km in the atmosphere and 0.25◦ in the ocean, have been performed at relatively few research centres and generally without overall coordination, primarily due to their computational cost. Assessing the robustness of the response of simulated climate to model resolution requires a large multi-model ensemble using a coordinated set of experiments. The Coupled Model Intercomparison Project 6 (CMIP6) is the ideal framework within which to conduct such a study, due to the strong link to models being developed for the CMIP DECK experiments and other model intercomparison projects (MIPs). Increases in high-performance computing (HPC) resources, as well as the revised experimental design for CMIP6, now enable a detailed investigation of the impact of increased resolution up to synoptic weather scales on the simulated mean climate and its variability. The High Resolution Model Intercomparison Project (HighResMIP) presented in this paper applies, for the first time, a multi-model approach to the systematic investigation of the impact of horizontal resolution. A coordinated set of experiments has been designed to assess both a standard and an enhanced horizontal-resolution simulation in the atmosphere and ocean. The set of HighResMIP experiments is divided into three tiers consisting of atmosphere-only and coupled runs and spanning the period 19502050, with the possibility of extending to 2100, together with some additional targeted experiments. This paper describes the experimental set-up of HighResMIP, the analysis plan, the connection with the other CMIP6 endorsed MIPs, as well as the DECK and CMIP6 historical simulations. HighResMIP thereby focuses on one of the CMIP6 broad questions, what are the origins and consequences of systematic model biases?, but we also discuss how it addresses the World Climate Research Program (WCRP) grand challenges.
AreaMET
Arrangementurlib.net > BDMCI > Fonds > Produção anterior à 2021 > DIDMD > High resolution model...
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Languageen
Target Filehaarsma_high.pdf
User Grouplattes
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lattes
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Mirror Repositoryurlib.net/www/2011/03.29.20.55
Next Higher Units8JMKD3MGPCW/43SKC35
Citing Item Listsid.inpe.br/mtc-m21/2012/07.13.14.57.54 1
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Host Collectiondpi.inpe.br/plutao@80/2008/08.19.15.01
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