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1. Identity statement
Reference TypeJournal Article
Sitemtc-m21c.sid.inpe.br (namespace prefix: upn:3Q3U5H8)
Holder Codeisadg {BR SPINPE} ibi 8JMKD3MGPCW/3DT298S
Identifier8JMKD3MGP3W34R/42SP2LB
Repositorysid.inpe.br/mtc-m21c/2020/07.20.11.30   (restricted access)
Last Update2020:07.20.11.30.59 (UTC) simone
Metadata Repositorysid.inpe.br/mtc-m21c/2020/07.20.11.30.59
Metadata Last Update2022:01.04.01.35.16 (UTC) administrator
DOI10.1029/2019JD031187
ISSN2169-897X
Citation KeyCecchiniDiaMacRodBis:2020:MaMiCh
TitleMacrophysical and microphysical characteristics of convective rain cells observed during SOS-CHUVA
Year2020
MonthJuly
Access Date2025, Dec. 08
Type of Workjournal article
Secondary TypePRE PI
Number of Files1
Size4300 KiB
2. Context
Author1 Cecchini, Micael Amore
2 Dias, Maria A. F. Silva
3 Machado, Luiz Augusto Toledo
4 Rodriguez, Carlos A. Morales
5 Biscaro, Thiago Souza
Resume Identifier1
2
3 8JMKD3MGP5W/3C9JHMS
ORCID1 0000-0002-0219-2857
2
3 0000-0002-8243-1706
4 0000-0003-3076-4442
5 0000-0002-2338-3871
Group1
2
3 DIDMD-CGCPT-INPE-MCTIC-GOV-BR
4
5 DIDSA-CGCPT-INPE-MCTIC-GOV-BR
Affiliation1 Universidade de São Paulo (USP)
2 Universidade de São Paulo (USP)
3 Instituto Nacional de Pesquisas Espaciais (INPE)
4 Universidade de São Paulo (USP)
5 Instituto Nacional de Pesquisas Espaciais (INPE)
Author e-Mail Address1
2
3 luiz.machado@inpe.br
4
5 thiago.biscaro@inpe.br
JournalJournal of Geophysical Research: Atmospheres
Volume125
Number13
Pagese2019JD0311187
Host Collectionurlib.net/www/2017/11.22.19.04 upn:3Q3U5H8
History (UTC)2020-07-20 11:31:55 :: simone -> administrator :: 2020
2022-01-04 01:35:16 :: administrator -> simone :: 2020
3. Content and structure
Is the master or a copy?is the master
Content Stagecompleted
Transferable1
Content TypeExternal Contribution
Version Typepublisher
AbstractIn this study, we present a methodology to study the properties of convective precipitation in a holistic way. We apply a tracking algorithm to X‐band radar retrievals to store Lagrangian properties of convective rain cells. The height of maximum reflectivity (HZmax) is combined with the vertically integrated water (VIW) to provide a useful parameter space to constrain the microphysical study of the cells. This parameter determines most of the shape of the vertical structure of rain cells, where VIW acts as a modulating factor. Decreases in HZmax are likely associated to enhanced collection processes, which favor growth of reflectivity (Z), differential reflectivity (Zdr), differential attenuation (Kdp), and droplet mean volume diameter (D0). This growth is further favored under higher VIW conditions. By discriminating the microphysical analysis by HZmax and VIW, droplet growth can be analyzed in different types of rain cells and stages of life cycle. Overall, the results presented here can help understand the constraints of the vertical structure of rain cells and microphysical properties from the combination of HZmax and VIW. Contrary to the microphysical retrievals themselves, computations of HZmax and VIW do not depend on dual polarization.
AreaMET
Arrangement 1urlib.net > BDMCI > Fonds > Produção anterior à 2021 > DIDMD > Macrophysical and microphysical...
Arrangement 2urlib.net > BDMCI > Fonds > Produção anterior à 2021 > DIDSA > Macrophysical and microphysical...
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4. Conditions of access and use
Languageen
Target File2019JD031187.pdf
User Groupsimone
Reader Groupadministrator
simone
Visibilityshown
Read Permissiondeny from all and allow from 150.163
Update Permissionnot transferred
5. Allied materials
Next Higher Units8JMKD3MGPCW/43SKC35
8JMKD3MGPCW/43SRC6S
Citing Item Listsid.inpe.br/bibdigital/2021/01.03.02.10 - 46
sid.inpe.br/bibdigital/2021/01.01.17.20 - 14
sid.inpe.br/mtc-m21/2012/07.13.14.54.06 - 6
DisseminationPORTALCAPES; SCOPUS.
6. Notes
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