1. Identificação | |
Tipo de Referência | Artigo em Revista Científica (Journal Article) |
Site | mtc-m21d.sid.inpe.br |
Código do Detentor | isadg {BR SPINPE} ibi 8JMKD3MGPCW/3DT298S |
Identificador | 8JMKD3MGP3W34T/4BJ8MQ2 |
Repositório | sid.inpe.br/mtc-m21d/2024/07.01.16.39 (acesso restrito) |
Última Atualização | 2024:07.01.16.39.56 (UTC) simone |
Repositório de Metadados | sid.inpe.br/mtc-m21d/2024/07.01.16.41 |
Última Atualização dos Metadados | 2024:07.03.07.40.42 (UTC) administrator |
DOI | 10.1007/s00382-024-07210-5 |
ISSN | 0930-7575 |
Chave de Citação | ZhangPXDZLNLBVYTSKASYMLQQNNPSTWZZZMBBHLXPNCG:2024:GEFiPh |
Título | Near-global summer circulation response to the spring surface temperature anomaly in Tibetan Plateau -- the GEWEX/LS4P first phase experiment  |
Ano | 2024 |
Mês | Mar. |
Data de Acesso | 09 maio 2025 |
Tipo de Trabalho | journal article |
Tipo Secundário | PRE PI |
Número de Arquivos | 1 |
Tamanho | 4954 KiB |
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2. Contextualização | |
Autor | 1 Zhang, Yang 2 Pan, Yan 3 Xue, Yongkang 4 Diallo, Ismaila 5 Zeng, Xubin 6 Li, Shuting 7 Neelin, J. David 8 Lau, William K. M. 9 Boone, Aaron A. 10 Vitart, Frederic 11 Yao, Tandon 12 Tang, Qi 13 Sato, Tomonori 14 Koo, Myung-Seo 15 Ardilouze, Constantin 16 Saha, Subodh K. 17 Yang, Jing 18 Materia, Stefano 19 Lin, Zhaohui 20 Qi, Xin 21 Qin, Yi 22 Nakamura, Tets 23 Nobre, Paulo 24 Peano, Daniele 25 Senan, Retish 26 Takaya, Yuhei 27 Wang, Hailan 28 Zhang, Hongliang 29 Zhan, Yanling 30 Zhao, Mei 31 Mechoso, Carlos R 32 Bao, Qing 33 Bottino, Marcus Jorge 34 Hong, Songyou 35 Lin, Yanluan 36 Xie, Shaocheng 37 Pan, Xiaoduo 38 Nayak, Hara Prasad 39 Chou, Sin Chan 40 Guo, Weidong |
Identificador de Curriculo | 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 8JMKD3MGP5W/3C9JJ3B |
ORCID | 1 0000-0003-4102-2671 |
Grupo | 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 DIMNT-CGCT-INPE-MCTI-GOV-BR 24 25 26 27 28 29 30 31 32 33 DIMNT-CGCT-INPE-MCTI-GOV-BR 34 35 36 37 38 39 DIMNT-CGCT-INPE-MCTI-GOV-BR |
Afiliação | 1 Nanjing University 2 Nanjing University 3 University of California 4 Pennsylvania State University 5 University of Arizona 6 Nanjing University 7 University of Californi 8 University of Maryland 9 Université de Toulouse 10 European Centre for Medium-Range Weather Forecasts 11 Chinese Academy of Sciences (CAS) 12 Lawrence Livermore National Laboratory 13 Hokkaido University 14 Korea Institute of Atmospheric Prediction System 15 Université de Toulouse 16 Indian Institute of Tropical Meteorology 17 Beijing Normal University 18 Barcelona Supercomputing Centre 19 Chinese Academy of Sciences (CAS) 20 Beijing Normal University 21 Pacifc Northwest National Laboratory 22 Hokkaido University 23 Instituto Nacional de Pesquisas Espaciais (INPE) 24 Fondazione Centro Euro-Mediterraneo sui Cambiamenti Climatic 25 European Centre for Medium-Range Weather Forecasts 26 Japan Meteorological Agency 27 National Center for Environmental Prediction 28 Center for Earth System Modeling and Prediction 29 Chinese Academy of Sciences (CAS) 30 Bureau of Meteorolog 31 University of Californi 32 Chinese Academy of Sciences (CAS) 33 Instituto Nacional de Pesquisas Espaciais (INPE) 34 Hokkaido Universit 35 Tsinghua Universit 36 Lawrence Livermore National Laboratory 37 Chinese Academy of Sciences (CAS) 38 University of Californi 39 Instituto Nacional de Pesquisas Espaciais (INPE) 40 Nanjing University |
Endereço de e-Mail do Autor | 1 yangzhang@nju.edu.cn 2 3 yxue@geog.ucla.edu 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 paulo.nobre@inpe.br 24 25 26 27 28 29 30 31 32 33 marcus.bottino@inpe.br 34 35 36 37 38 39 chou.chan@inpe.br |
Revista | Climate Dynamics |
Volume | 62 |
Páginas | 2907-2924 |
Nota Secundária | A1_INTERDISCIPLINAR A1_GEOCIÊNCIAS A1_CIÊNCIAS_BIOLÓGICAS_I A1_CIÊNCIAS_AMBIENTAIS A1_BIODIVERSIDADE A2_ENGENHARIAS_I A2_ASTRONOMIA_/_FÍSICA B1_CIÊNCIA_DA_COMPUTAÇÃO |
Histórico (UTC) | 2024-07-01 16:41:08 :: simone -> administrator :: 2024-07-01 16:41:21 :: administrator -> simone :: 2024 2024-07-01 16:46:55 :: simone -> administrator :: 2024 2024-07-03 07:40:42 :: administrator -> simone :: 2024 |
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3. Conteúdo e estrutura | |
É a matriz ou uma cópia? | é a matriz |
Estágio do Conteúdo | concluido |
Transferível | 1 |
Tipo do Conteúdo | External Contribution |
Tipo de Versão | publisher |
Resumo | Subseasonal to seasonal (S2S) prediction of droughts and floods is one of the major challenges of weather and climate prediction. Recent studies suggest that the springtime land surface temperature/subsurface temperature (LST/SUBT) over the Tibetan Plateau (TP) can be a new source of S2S predictability. The project "Impact of Initialized Land Surface Temperature and Snowpack on Subseasonal to Seasonal Prediction (LS4P)" was initiated to study the impact of springtime LST/SUBT anomalies over high mountain areas on summertime precipitation predictions. The present work explores the simulated global scale response of the atmospheric circulation to the springtime TP land surface cooling by 16 current state-of-the-art Earth System Models (ESMs) participating in the LS4P Phase I (LS4P-I) experiment. The LS4P-I results show, for the first time, that springtime TP surface anomalies can modulate a persistent quasi-barotropic Tibetan Plateau-Rocky Mountain Circumglobal (TRC) wave train from the TP via the northeast Asia and Bering Strait to the western part of the North America, along with the springtime westerly jet from TP across the whole North Pacific basin. The TRC wave train modulated by the TP thermal anomaly play a critical role on the early summer surface air temperature and precipitation anomalies in the regions along the wave train, especially over the northwest North America and the southern Great Plains. The participant models that fail in capturing the TRC wave train greatly under-predict climate anomalies in reference to observations and the successful models. These results suggest that the TP LST/SUBT anomaly via the TRC wave train is the first order source of the S2S variability in the regions mentioned. Furthermore, the TP surface temperature anomaly can influence the Southern Hemispheric circulation by generating cross-equator wave trains. However, the simulated propagation pathways from the TP into the Southern Hemisphere show large inter-model differences. More dynamical understanding of the TRC wave train as well as its cross-equator propagation into the Southern Hemisphere will be explored in the newly launched LS4P phase II experiment. |
Área | MET |
Arranjo | urlib.net > BDMCI > Fonds > Produção a partir de 2021 > CGCT > Near-global summer circulation... |
Conteúdo da Pasta doc | acessar |
Conteúdo da Pasta source | não têm arquivos |
Conteúdo da Pasta agreement | |
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4. Condições de acesso e uso | |
Idioma | en |
Arquivo Alvo | s00382-024-07210-5.pdf |
Grupo de Usuários | simone |
Grupo de Leitores | administrator simone |
Visibilidade | shown |
Política de Arquivamento | denypublisher denyfinaldraft12 |
Permissão de Leitura | deny from all and allow from 150.163 |
Permissão de Atualização | não transferida |
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5. Fontes relacionadas | |
Repositório Espelho | urlib.net/www/2021/06.04.03.40.25 |
Unidades Imediatamente Superiores | 8JMKD3MGPCW/46KUATE |
Lista de Itens Citando | sid.inpe.br/mtc-m21/2012/07.13.14.57.54 8 sid.inpe.br/bibdigital/2022/04.03.22.23 2 |
Divulgação | WEBSCI; PORTALCAPES; AGU; COMPENDEX; SCOPUS. |
Acervo Hospedeiro | urlib.net/www/2021/06.04.03.40 |
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6. Notas | |
Campos Vazios | alternatejournal archivist callnumber copyholder copyright creatorhistory descriptionlevel e-mailaddress format isbn keywords label lineage mark nextedition notes number parameterlist parentrepositories previousedition previouslowerunit progress project rightsholder schedulinginformation secondarydate secondarykey session shorttitle sponsor subject tertiarymark tertiarytype url |
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7. Controle da descrição | |
e-Mail (login) | simone |
atualizar | |
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