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1. Identificação
Tipo de ReferênciaArtigo em Revista Científica (Journal Article)
Siteplutao.sid.inpe.br
Código do Detentorisadg {BR SPINPE} ibi 8JMKD3MGPCW/3DT298S
Identificador8JMKD3MGP3W/48747UL
Repositóriosid.inpe.br/plutao/2022/12.12.18.42.36
Última Atualização2022:12.13.21.41.53 (UTC) administrator
Repositório de Metadadossid.inpe.br/plutao/2022/12.12.18.42.37
Última Atualização dos Metadados2023:06.16.06.43.26 (UTC) administrator
DOI10.1175/BAMS-D-21-0270.1
ISSN0003-0007
Rótulolattes: 4336175279058172 48 XueDBYZZDLPLPTVSKMSYALQNSSTWZZPCFBFHNPQVXZKLLEGBBCRLZQZTLHJJQSWYY:2022:InImPr
Chave de CitaçãoXueDBYZZDLPLPTVSKMSYALQNSSTWZZPCFBFHNPQVXZKLLEGBBCRLZQZTLHJJQSWYY:2022:InImPr
TítuloSpring Land Temperature in Tibetan Plateau and Global-Scale Summer Precipitation - Initialization and Improved Prediction
Ano2022
Data de Acesso18 maio 2024
Tipo de Trabalhojournal article
Tipo SecundárioPRE PI
Número de Arquivos1
Tamanho14342 KiB
2. Contextualização
Autor 1 Xue, Yongkang
 2 Diallo, Ismaila
 3 Boone, Aaron A.
 4 Yao, Tandong
 5 Zhang, Yang
 6 Zeng, Xubin
 7 David Neelin, J.
 8 Lau, William K. M.
 9 Pan, Yan
10 Liu, Ye
11 Pan, Xiaoduo
12 Tang, Qi
13 Van Oevelen, Peter J.
14 Sato, Tomonori
15 Koo, Myung-Seo
16 Materia, Stefano
17 Shi, Chunxiang
18 Yang, Jing
19 Ardilouze, Constantin
20 Lin, Zhaohui
21 Qi, Xin
22 Nakamura, Tetsu
23 Saha, Subodh K.
24 Senan, Retish
25 Takaya, Yuhei
26 Wang, Hailan
27 Zhang, Hongliang
28 Zhao, Mei
29 Prasad Nayak, Hara
30 Chen, Qiuyu
31 Feng, Jinming
32 Brunke, Michael A.
33 Fan, Tianyi
34 Hong, Songyou
35 Nobre, Paulo
36 Peano, Daniele
37 Qin, Yi
38 Vitart, Frederic
39 Xie, Shaocheng
40 Zhan, Yanling
41 Klocke, Daniel
42 Leung, Ruby
43 Li, Xin
44 Ek, Michael
45 Guo, Weidong
46 Balsamo, Gianpaolo
47 Bao, Qing
48 Chou, Sin Chan
49 de Rosnay, Patricia
50 Lin, Yanluan
51 Zhu, Yuejian
52 Qian, Yun
53 Zhao, Ping
54 Tang, Jianping
55 Liang, Xin-Zhong
56 Hong, Jinkyu
57 Ji, Duoying
58 Ji, Zhenming
59 Qiu, Yuan
60 Sugimoto, Shiori
61 Wang, Weicai
62 Yang, Kun
63 Yu, Miao
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RevistaBulletin of The American Meteorological Society
Volume103
Número12
PáginasE2756-E2767
Nota SecundáriaA1_INTERDISCIPLINAR A1_GEOCIÊNCIAS A1_ENGENHARIAS_III A1_CIÊNCIAS_AMBIENTAIS A1_BIODIVERSIDADE
Histórico (UTC)2022-12-12 18:42:37 :: lattes -> administrator ::
2022-12-13 21:36:41 :: administrator -> lattes :: 2022
2022-12-13 21:41:54 :: lattes -> administrator :: 2022
2022-12-20 10:35:38 :: administrator -> lattes :: 2022
2022-12-20 13:40:30 :: lattes -> administrator :: 2022
2023-06-16 06:43:26 :: administrator -> simone :: 2022
3. Conteúdo e estrutura
É a matriz ou uma cópia?é a matriz
Estágio do Conteúdoconcluido
Transferível1
Tipo do ConteúdoExternal Contribution
Tipo de Versãopublisher
Palavras-ChaveAtmosphere
Atmosphere-land interaction
Ensembles
Numerical weather prediction/forecasting
General circulation models
Model initialization
ResumoSubseasonal-to-seasonal (S2S) precipitation prediction in boreal spring and summer months, which contains a significant number of high-signal events, is scientifically challenging and prediction skill has remained poor for years. Tibetan Plateau (TP) spring observed surface ­temperatures show a lag correlation with summer precipitation in several remote regions, but current global landatmosphere coupled models are unable to represent this behavior due to significant errors in producing observed TP surface temperatures. To address these issues, the Global Energy and Water Exchanges (GEWEX) program launched the Impact of Initialized Land Temperature and Snowpack on Subseasonal-to-Seasonal Prediction (LS4P) initiative as a community effort to test the impact of land temperature in high-mountain regions on S2S prediction by climate models: more than 40 institutions worldwide are participating in this project. After using an innovative new land state initialization approach based on observed surface 2-m temperature over the TP in the LS4P experiment, results from a multimodel ensemble provide evidence for a causal relationship in the observed association between the Plateau spring land temperature and summer precipitation over several regions across the world through teleconnections. The influence is underscored by an out-of-phase oscillation between the TP and Rocky Mountain surface temperatures. This study reveals for the first time that high-mountain land temperature could be a substantial source of S2S precipitation predictability, and its effect is probably as large as ocean surface temperature over global hotspot regions identified here; the ensemble means in some hotspots produce more than 40% of the observed anomalies. This LS4P approach should stimulate more follow-on explorations.
ÁreaMET
Arranjourlib.net > BDMCI > Fonds > Produção a partir de 2021 > CGCT > Spring Land Temperature...
Conteúdo da Pasta docacessar
Conteúdo da Pasta sourcenão têm arquivos
Conteúdo da Pasta agreementnão têm arquivos
4. Condições de acesso e uso
URL dos dadoshttp://urlib.net/ibi/8JMKD3MGP3W/48747UL
URL dos dados zipadoshttp://urlib.net/zip/8JMKD3MGP3W/48747UL
Idiomaen
Arquivo Alvo1520-0477-BAMS-D-21-0270.1.pdf
Grupo de Usuárioslattes
Visibilidadeshown
Política de Arquivamentodenypublisher6 allowfinaldraft
Permissão de Leituraallow from all
Permissão de Atualizaçãonão transferida
5. Fontes relacionadas
Unidades Imediatamente Superiores8JMKD3MGPCW/46KUATE
Lista de Itens Citandosid.inpe.br/bibdigital/2022/04.03.22.23 4
sid.inpe.br/mtc-m21/2012/07.13.14.57.54 2
DivulgaçãoWEBSCI; PORTALCAPES; MGA; COMPENDEX.
Acervo Hospedeirodpi.inpe.br/plutao@80/2008/08.19.15.01
6. Notas
Campos Vaziosalternatejournal archivist callnumber copyholder copyright creatorhistory descriptionlevel e-mailaddress format isbn lineage mark mirrorrepository month nextedition notes orcid parameterlist parentrepositories previousedition previouslowerunit progress project readergroup rightsholder schedulinginformation secondarydate secondarykey session shorttitle sponsor subject tertiarymark tertiarytype url
7. Controle da descrição
e-Mail (login)simone
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