Hidrodinâmica em zona de perturbação de barragem tropical
The region of water level fluctuation in reservoirs represents a disturbance zone that experiences exposure to cyclical flooding, due to its operations, inducing marginal mass movements that mix with the constant transport of sediments from adjacent hydrographic basins. The objective of this study i...
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Universidade Estadual de Ponta Grossa
2020-10-01
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doaj-3c879e7038b8470e83979f977a0f9ed52021-04-05T16:30:58ZengUniversidade Estadual de Ponta GrossaTerr@ Plural1982-095X2020-10-0114e2015782http://dx.doi.org/10.5212/TerraPlural.v.14.2015782.057Hidrodinâmica em zona de perturbação de barragem tropical Alesson Pires Maciel Guirra0https://orcid.org/0000-0003-4201-3574Jaíza Santos Motta1https://orcid.org/0000-0002-3714-6631Ariadne Barbosa Gonçalves2https://orcid.org/0000-0003-2496-5723Antonio Conceição Paranhos Filho3https://orcid.org/0000-0002-9838-5337Universidade Federal dos Vales Jequitinhonha e Mucuri, Diamantina, MG, BrasilUniversidade Federal de Mato Grosso do Sul - Campo Grande, MS, BrasilUniversidade Federal de Mato Grosso do Sul - Campo Grande, MS, BrasilUniversidade Federal de Mato Grosso do Sul - Campo Grande, MS, BrasilThe region of water level fluctuation in reservoirs represents a disturbance zone that experiences exposure to cyclical flooding, due to its operations, inducing marginal mass movements that mix with the constant transport of sediments from adjacent hydrographic basins. The objective of this study is to determine the best source of multispectral images of medium spatial resolution to diagnose hydrodynamic processes, proposing a classification key based on the composition of satellite image bands. Besides, understand what the main types of mass movements occur and how natural and anthropic factors influence these events. For this, we qualitatively compare images from the Landsat-5 TM, Landsat 8 OLI, and Sentinel-2 MSI satellites, in combinations of simple bands and based on equation with detailed images obtained by remotely piloted aircraft. We found that the association between the simple composition true color 432 together with the composition VRE-VIS, adapted in this study, provides enhancements for transporting active sediments on exposed soil at the reservoir margins and the combination VNIR-VRE2, also adapted, presents better clarity concerning to the depth of the water depth.https://revistas2.uepg.br/index.php/tp/article/view/15782/209209213744hydroelectric planttropical reservoirremote sensing |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Alesson Pires Maciel Guirra Jaíza Santos Motta Ariadne Barbosa Gonçalves Antonio Conceição Paranhos Filho |
spellingShingle |
Alesson Pires Maciel Guirra Jaíza Santos Motta Ariadne Barbosa Gonçalves Antonio Conceição Paranhos Filho Hidrodinâmica em zona de perturbação de barragem tropical Terr@ Plural hydroelectric plant tropical reservoir remote sensing |
author_facet |
Alesson Pires Maciel Guirra Jaíza Santos Motta Ariadne Barbosa Gonçalves Antonio Conceição Paranhos Filho |
author_sort |
Alesson Pires Maciel Guirra |
title |
Hidrodinâmica em zona de perturbação de barragem tropical |
title_short |
Hidrodinâmica em zona de perturbação de barragem tropical |
title_full |
Hidrodinâmica em zona de perturbação de barragem tropical |
title_fullStr |
Hidrodinâmica em zona de perturbação de barragem tropical |
title_full_unstemmed |
Hidrodinâmica em zona de perturbação de barragem tropical |
title_sort |
hidrodinâmica em zona de perturbação de barragem tropical |
publisher |
Universidade Estadual de Ponta Grossa |
series |
Terr@ Plural |
issn |
1982-095X |
publishDate |
2020-10-01 |
description |
The region of water level fluctuation in reservoirs represents a disturbance zone that experiences exposure to cyclical flooding, due to its operations, inducing marginal mass movements that mix with the constant transport of sediments from adjacent hydrographic basins. The objective of this study is to determine the best source of multispectral images of medium spatial resolution to diagnose hydrodynamic processes, proposing a classification key based on the composition of satellite image bands. Besides, understand what the main types of mass movements occur and how natural and anthropic factors influence these events. For this, we qualitatively compare images from the Landsat-5 TM, Landsat 8 OLI, and Sentinel-2 MSI satellites, in combinations of simple bands and based on equation with detailed images obtained by remotely piloted aircraft. We found that the association between the simple composition true color 432 together with the composition VRE-VIS, adapted in this study, provides enhancements for transporting active sediments on exposed soil at the reservoir margins and the combination VNIR-VRE2, also adapted, presents better clarity concerning to the depth of the water depth. |
topic |
hydroelectric plant tropical reservoir remote sensing |
url |
https://revistas2.uepg.br/index.php/tp/article/view/15782/209209213744 |
work_keys_str_mv |
AT alessonpiresmacielguirra hidrodinamicaemzonadeperturbacaodebarragemtropical AT jaizasantosmotta hidrodinamicaemzonadeperturbacaodebarragemtropical AT ariadnebarbosagoncalves hidrodinamicaemzonadeperturbacaodebarragemtropical AT antonioconceicaoparanhosfilho hidrodinamicaemzonadeperturbacaodebarragemtropical |
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1721540702364499968 |