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1. Identificação
Tipo de ReferênciaArtigo em Revista Científica (Journal Article)
Sitemtc-m21d.sid.inpe.br
Código do Detentorisadg {BR SPINPE} ibi 8JMKD3MGPCW/3DT298S
Identificador8JMKD3MGP3W34T/475JTML
Repositóriosid.inpe.br/mtc-m21d/2022/06.20.18.12
Repositório de Metadadossid.inpe.br/mtc-m21d/2022/06.20.18.12.04
Última Atualização dos Metadados2023:01.03.16.46.07 (UTC) administrator
DOI10.1175/JCLI-D-20-0864.1
ISSN0894-8755
Chave de CitaçãoChadwickPendAlveMois:2022:HoReDi
TítuloHow Do Regional Distributions of Daily Precipitation Change under Warming?
Ano2022
MêsJune
Data de Acesso18 maio 2024
Tipo de Trabalhojournal article
Tipo SecundárioPRE PI
2. Contextualização
Autor1 Chadwick, Robin
2 Pendergrass, Angeline G.
3 Alves, Lincoln Muniz
4 Moise, Aurel
Grupo1
2
3 DIIAV-CGCT-INPE-MCTI-GOV-BR
Afiliação1 Met Off Hadley
2
3 Instituto Nacional de Pesquisas Espaciais (INPE)
Endereço de e-Mail do Autor1
2
3 lincoln.muniz@gmail.com
RevistaJournal of Climate
Volume35
Número11
Páginas3243-3260
Nota SecundáriaA1_INTERDISCIPLINAR A1_GEOCIÊNCIAS A1_ENGENHARIAS_I A1_CIÊNCIAS_AMBIENTAIS A2_CIÊNCIAS_BIOLÓGICAS_I A2_BIODIVERSIDADE B1_ASTRONOMIA_/_FÍSICA C_CIÊNCIAS_AGRÁRIAS_I
Histórico (UTC)2022-06-20 18:12:04 :: simone -> administrator ::
2022-06-20 18:23:21 :: administrator -> simone :: 2022
2022-06-20 18:24:00 :: simone -> administrator :: 2022
2023-01-03 16:46:07 :: administrator -> simone :: 2022
3. Conteúdo e estrutura
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Tipo do ConteúdoExternal Contribution
Tipo de Versãopublisher
Palavras-ChaveClimate changeClimate modelsPrecipitationConvectionEnergy transport
ResumoGlobal warming is changing the intensity distribution of daily precipitation, with an increased frequency of heavy precipitation and reduced frequency of light/moderate precipitation in general circulation model (GCM) projections. Projected future CMIP5 GCM changes in regional daily precipitation distribution can be described by a combination of two idealized modes: a frequency decrease mode, representing a reduction in the frequency of precipitation at all rain rates; and a frequency shift mode, where the distribution shifts toward heavier rain rates. A decrease in daily precipitation frequency and an increase in intensity are projected in most regions, but the magnitude of change shows large regional variations. The two modes generally capture the projected shift from light/moderate to heavy rain rates but do not recreate GCM changes at the very highest and lowest rain rates. We propose a simple framework for deep convective precipitation change based on the dry static energy (DSE) budget, which provides a physical explanation of these idealized modes in regions and seasons where deep convection dominates precipitation. One possibility is that a frequency decrease mode is driven by increased convective inhibition (CIN). In this DSE framework, increased moisture under warming could influence the shape of the precipitation intensity distribution, particularly at the highest rain rates, but does not govern the overall magnitude of the shift to heavier rain rates, which is not well described by the Clausius-Clapeyron relationship. Changes in daily regional precipitation are not free to respond only to local changes (in e.g., moisture) but are also constrained by the DSE budget, particularly by DSE transport associated with the large-scale circulation.
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5. Fontes relacionadas
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6. Notas
Campos Vaziosalternatejournal archivist callnumber copyholder copyright creatorhistory descriptionlevel e-mailaddress format isbn label lineage mark mirrorrepository nextedition notes numberoffiles orcid parameterlist parentrepositories previousedition previouslowerunit progress project resumeid rightsholder schedulinginformation secondarydate secondarykey session shorttitle size sponsor subject targetfile tertiarymark tertiarytype url
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