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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
IdentificadorJ8LNKAN8RW/3E7URD8
Repositóriodpi.inpe.br/plutao/2013/05.31.19.30.06
Última Atualização2013:06.24.18.43.54 (UTC) administrator
Repositório de Metadadosdpi.inpe.br/plutao/2013/05.31.19.30.07
Última Atualização dos Metadados2021:03.06.19.29.33 (UTC) administrator
DOI10.5194/gmdd-6-721-2013
ISSN1991-962X
1991-9611
Rótulolattes: 9873289111461387 2 StradaFreMarLonPau:2013:OnSiFi
Chave de CitaçãoStradaFreMarLonPau:2013:OnSiFi
TítuloOne-dimensional simulation of fire injection heights in contrasted meteorological scenarios with PRM and Meso-NH models
Ano2013
Data de Acesso02 maio 2024
Tipo de Trabalhojournal article
Tipo SecundárioPRE PI
Número de Arquivos1
Tamanho5464 KiB
2. Contextualização
Autor1 Strada, S.
2 Freitas, Saulo Ribeiro de
3 Mari, C.
4 Longo, Karla Maria
5 Paugam, R.
Identificador de Curriculo1
2 8JMKD3MGP5W/3C9JJ7M
3
4 8JMKD3MGP5W/3C9JHKQ
Grupo1
2 DMD-CPT-INPE-MCTI-GOV-BR
3
4 CST-CST-SPG-INPE-MCTI-GOV-BR
Afiliação1 Laboratoire d’Aerologie, University of Toulouse and CNRS, UMR5560, Toulouse, France
2 Instituto Nacional de Pesquisas Espaciais (INPE)
3 Laboratoire d’Aerologie, University of Toulouse and CNRS, UMR5560, Toulouse, France
4 Instituto Nacional de Pesquisas Espaciais (INPE)
5 Department of Geography, King’s College London, London, UK
Endereço de e-Mail do Autor1 susanna.strada@aero.obs-mip.fr
2 saulo.freitas@cptec.inpe.br
3
4 karla.longo@cptec.inpe.br
Endereço de e-Mailsaulo.freitas@cptec.inpe.br
RevistaGeoscientific Model Development Discussions
Volume6
Número1
Páginas721-790
Histórico (UTC)2013-05-31 19:35:14 :: lattes -> administrator :: 2013
2021-03-06 19:29:33 :: administrator -> marcelo.pazos@inpe.br :: 2013
3. Conteúdo e estrutura
É a matriz ou uma cópia?é a matriz
Estágio do Conteúdoconcluido
Transferível1
Tipo do ConteúdoExternal Contribution
Tipo de Versãofinaldraft
Palavras-Chavewild-fi


fire injection
aerosol
hazardous trace gases
ResumoWild-fires release huge amounts of aerosol and hazardous trace gases in the atmosphere. The residence time and the dispersion of fire pollutants in the atmosphere can range from hours to days and from local to continental scales. These various scenario shighly depend on the injection height of smoke plumes. The altitude at which fire products are injected in the atmosphere is controlled by fire characteristics and meteorological conditions. Injection height however is still poorly accounted in chemistry transport models for which fires are sub-grid scale processes which need to be parametrised. Only recently, physically-based approaches for estimating the fire injection heights have been developed which consider both the convective updrafts induced by the release of fire sensible heat and the impact of background meteorological environment on the fire convection dynamics. In this work, two different models are used to simulate fire injection heights in contrasted meteorological scenarios: a Mediterranean arson fire and two Amazonian deforestation fires. A Eddy-Diffusivity/Mass-Flux approach, for merly developed to reproduce convective boundary layer in the non-hydrostatic meteorological model Meso-NH, is compared to the 1-D Plume Rise Model. For both models, radiosonde data and re-analyses from the European Center for Medium-Range Weather Forecasts (ECMWF) have been used as initial conditions to explore the sensitivity of the models responses to different meteorological forcings. The two models predict injection heights for the Mediterranean fire between 1.7 and 3.3 km with the Meso-NH/EDMF model systematically higher than the 1-D PRM model. Both models show a limited sensitivity to the meteorological forcings with a 2030 % difference in the injection height between radiosondes and ECMWF data for this case. Injection heights calculated for the two Amazonian fires ranges from 5 to 6.5 km for the 1-D PRM model and from 2 to 4 km for the Meso-NH/EDMF model. The difference of smoke plume heights between the two models can reach 34 km. A large difference is obtained for the windy-wet Amazonian fire by the 1-D PRM model with a injection height 1.5 km higher when ECMWF re-analyses are used compared to the run with the radiosonde forcing. For the Mediterranean case, both models forecast a plume injection height above the boundary layer, although there are evidences that this particular fire propagated near the surface, highlighting the current limitations of the two approaches.
ÁreaMET
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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/J8LNKAN8RW/3E7URD8
URL dos dados zipadoshttp://urlib.net/zip/J8LNKAN8RW/3E7URD8
Idiomaen
Arquivo Alvogmdd-6-721-2013.pdf
Grupo de Usuáriosadministrator
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marcelo.pazos@inpe.br
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Grupo de Leitoresadministrator
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Visibilidadeshown
Licença de Direitos Autoraisurlib.net/www/2012/11.12.14.05
Política de Arquivamentoallowpublisher allowfinaldraft
Permissão de Atualizaçãonão transferida
5. Fontes relacionadas
VinculaçãoTrabalho Vinculado à Tese/Dissertação
Repositório Espelhoiconet.com.br/banon/2006/11.26.21.31
Unidades Imediatamente Superiores8JMKD3MGPCW/43SKC35
8JMKD3MGPCW/449U4PL
Lista de Itens Citandosid.inpe.br/mtc-m21/2012/07.13.14.59.52 2
sid.inpe.br/bibdigital/2021/03.06.05.18 1
DivulgaçãoPORTALCAPES
Acervo Hospedeirodpi.inpe.br/plutao@80/2008/08.19.15.01
6. Notas
Campos Vaziosalternatejournal archivist callnumber copyholder creatorhistory descriptionlevel format isbn lineage mark month nextedition notes orcid parameterlist parentrepositories previousedition previouslowerunit progress project readpermission rightsholder schedulinginformation secondarydate secondarykey secondarymark session shorttitle sponsor subject tertiarytype url
7. Controle da descrição
e-Mail (login)marcelo.pazos@inpe.br
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