Renata Libonati dos Santos
Instituição:
Universidade Federal do Rio de Janeiro
Centro:
Centro de Ciências Matemáticas e da Natureza
Unidade:
Instituto de Geociências
Departamento:
Centro de Estudo em Mudancas Ambientais/IGEO
Formação:
-
Universidade de Lisboa
| Pós-Doutorado | 2019 - 2019
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Instituto Superior de Agronomia
| Pós-Doutorado | 2018 - 2018
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Universidade Federal do Rio de Janeiro
| Pós-Doutorado | 2014 - 2015
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Instituto Nacional de Pesquisas Espaciais
| Pós-Doutorado | 2011 - 2013
-
Universidade de Lisboa
Ciências Geofísicas | Doutorado | 2006 - 2011
-
Faculdade de Ciencias da Universidade de Lisboa
Ciências Geofísicas - Meteorologia | Graduação | 2000 - 2005
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Centro Federal de Educação Tecnológica Celso Suckow da Fonseca
técnico em meteorologia | Ensino Profissional de nível técnico | 1995 - 1997
Laboratórios:
Nuvens de Palavras:
Artigos:
(98.72% artigos com DOI)
Titulo | DOI | Ano |
---|---|---|
The end of an entire biome? World's largest wetland, the Pantanal, is menaced by the Hidrovia project which is uncertain to sustainably support large-scale navigation | 10.1016/j.scitotenv.2023.167751 | 2024 |
Twenty-first-century demographic and social inequalities of heat-related deaths in Brazilian urban areas | 10.1371/journal.pone.0295766 | 2024 |
Megafires are here to stay - and blaming only climate change won?t help | 10.1038/d41586-024-00641-4 | 2024 |
A monthly gridded burned area database of national wildland fire data | 10.1038/s41597-024-03141-2 | 2024 |
Extreme terrestrial heat in 2023 | 10.1038/s43017-024-00536-y | 2024 |
Historical association between respiratory diseases hospitalizations and fire occurrence in the Pantanal wetland, Brazil | 10.1016/j.apr.2024.102182 | 2024 |
Lightning-induced fire regime in Portugal based on satellite-derived and in situ data | 10.1016/j.agrformet.2024.110108 | 2024 |
Transformers for mapping burned areas in Brazilian Pantanal and Amazon with PlanetScope imagery | 10.1016/j.jag.2022.103151 | 2023 |
A global database on holdover time of lightning-ignited wildfires | 10.5194/essd-15-1151-2023 | 2023 |
Fire Impacts on Water Resources: A Remote Sensing Methodological Proposal for the Brazilian Cerrado | 10.3390/fire6050214 | 2023 |
Wildfires Jeopardise Habitats of Hyacinth Macaw (Anodorhynchus hyacinthinus), a Flagship Species for the Conservation of the Brazilian Pantanal | 10.1007/s13157-023-01691-6 | 2023 |
The first systematic meteorological observations in the Americas (Recife, 1640-1642) | 10.1175/BAMS-D-21-0269.1 | 2023 |
Global-scale statistical modelling of the radiative power released by vegetation fires using a doubly truncated lognormal body distribution with generalized Pareto tails | 10.1016/j.physa.2023.129049 | 2023 |
Novel Approaches and Techniques for Understanding Vegetation Fires in South America | 10.3390/fire6070275 | 2023 |
Heat stress in South America over the last four decades: a bioclimatic analysis | 10.1007/s00704-023-04668-x | 2023 |
Combined large-scale tropical and subtropical forcing on the severe 2019-2022 drought in South America | 10.1038/s41612-023-00510-3 | 2023 |
Wildfire and smoke association with COVID-19 cases in the Pantanal wetland, Brazil | 10.1016/j.puhe.2023.10.032 | 2023 |
Could the compound effects of drought and fire have caused an increase of COVID-19 cases in the Pantanal wetland? | 10.1007/s11273-023-09965-w | 2023 |
Changes in land use enhance the sensitivity of tropical ecosystems to fire-climate extremes | 10.1038/s41598-022-05130-0 | 2022 |
Assessing the role of compound drought and heatwave events on unprecedented 2020 wildfires in the Pantanal | 10.1088/1748-9326/ac462e | 2022 |
Lightning patterns in the Pantanal: Untangling natural and anthropogenic-induced wildfires | 10.1016/j.scitotenv.2022.153021 | 2022 |
Prioritising areas for wildfire prevention and post-fire restoration in the Brazilian Pantanal | 10.1016/j.ecoleng.2021.106517 | 2022 |
Effects of Drought on Mortality in Macro Urban Areas of Brazil between 2000 to 2019 | 10.1029/2021GH000534 | 2022 |
Active Fire Mapping on Brazilian Pantanal Based on Deep Learning and CBERS 04A Imagery | 10.3390/rs14030688 | 2022 |
The influence of soil dry-out on the record-breaking hot 2013/2014 summer in Southeast Brazil | 10.1038/s41598-022-09515-z | 2022 |
Urbanization-induced impacts on heat-energy fluxes in tropical South America from 1984 to 2020: The Metropolitan Area of Rio de Janeiro/Brazil | 10.1016/j.buildenv.2022.109008 | 2022 |
Increased burned area in the Pantanal over the past two decades | 10.1016/j.scitotenv.2022.155386 | 2022 |
Tropical forests as drivers of lake carbon burial | 10.1038/s41467-022-31258-8 | | 2022 |
Drought-heatwave nexus in Brazil and related impacts on health and fires: A comprehensive review | 10.1111/nyas.14887 | 2022 |
A comprehensive characterization of MODIS daily burned area mapping accuracy across fire sizes in tropical savannas | 10.1016/j.rse.2020.112115 | 2021 |
Twenty-first century droughts have not increasingly exacerbated fire season severity in the Brazilian Amazon | 10.1038/s41598-021-82158-8 | 2021 |
Recent increasing frequency of compound summer drought and heatwaves in Southeast Brazil | 10.1088/1748-9326/abe0eb | 2021 |
Erythrina velutina Willd. alkaloids: piecing biosynthesis together from transcriptome analysis and metabolite profiling of seeds and leaves | 10.1016/j.jare.2021.01.017 | 2021 |
Proteome of (Erythroxylaceae): an endemic species of the semiarid Caatinga | 10.1080/11263504.2021.1918784 | 2021 |
Estimativa dos períodos de retorno da velocidade e rajada do vento e altura significativa das ondas no Atlântico Sudoeste | 10.20985/1980-5160.2021.v16n1.1703 | 2021 |
Fire in Paradise: Why the Pantanal is burning | 10.1016/j.envsci.2021.05.005 | 2021 |
Record-breaking wildfires in the world's largest continuous tropical wetland: Integrative fire management is urgently needed for both biodiversity and humans | 10.1016/j.jenvman.2021.112870 | 2021 |
Putting fire on the map of Brazilian savanna ecoregions | 10.1016/j.jenvman.2021.113098 | 2021 |
Drought resilience debt drives NPP decline in the Amazon Forest | 10.1029/2021GB007004 | 2021 |
Ranking of daily precipitation extreme events over oil pipelines in Rio de Janeiro | 10.3354/cr01675 | 2021 |
Prescribed burning reduces large, high-intensity wildfires and emissions in the Brazilian savanna | 10.3390/fire4030056 | 2021 |
Projections of subcontinental changes in seasonal precipitation over the two major river basins in South America under an extreme climate scenario | 10.1007/s00382-021-05955-x | 2021 |
Multi-Sensor, Active Fire-Supervised, One-Class Burned Area Mapping in the Brazilian Savanna | 10.3390/rs13194005 | 2021 |
Implementation of Fire Policies in Brazil: An Assessment of Fire Dynamics in Brazilian Savanna | 10.3390/su132011532 | 2021 |
The Pantanal under Siege?On the Origin, Dynamics and Forecast of the Megadrought Severely Affecting the Largest Wetland in the | 10.3390/w13213034 | 2021 |
Brazil is in water crisis - it needs a drought plan | 10.1038/d41586-021-03625-w | 2021 |
Distance sampling surveys reveal 17 million vertebrates directly killed by the 2020?s wildfires in the Pantanal, Brazil | 10.1038/s41598-021-02844-5 | 2021 |
Drought and fires influence the respiratory diseases hospitalizations in the Amazon | 10.1016/j.ecolind.2019.105817 | 2020 |
A deep learning approach for mapping and dating burned areas using temporal sequences of satellite images | 10.1016/j.isprsjprs.2019.12.014 | 2020 |
Heat-related mortality at the beginning of the twenty-first century in Rio de Janeiro, Brazil | 10.1007/s00484-020-01908-x | 2020 |
The roles of NDVI and Land Surface Temperature when using the Vegetation Health Index over dry regions | 10.1016/j.gloplacha.2020.103198 | 2020 |
Assessing VIIRS capabilities to improve burned area mapping over the Brazilian Cerrado | 10.1080/01431161.2020.1771791 | 2020 |
Rescue Brazil?s burning Pantanal wetlands | 10.1038/d41586-020-03464-1 | 2020 |
Characterizing the atmospheric conditions during the 2010 heatwave in Rio de Janeiro marked by excessive mortality rates | 10.1016/j.scitotenv.2018.09.060 | 2019 |
Long-Term Spatial-Temporal Characterization of Cloud-to-Ground Lightning in the Metropolitan Region of Rio de Janeiro | 10.1007/s00024-019-02216-1 | 2019 |
How well do global burned area products represent fire patterns in the Brazilian Savannas biome? An accuracy assessment of the MCD64 collections | 10.1016/j.jag.2019.02.010 | 2019 |
Impacts of the 1.5¿°C global warming target on future burned area in the Brazilian Cerrado | 10.1016/j.foreco.2019.05.047 | 2019 |
Burned Area Mapping on Conservation Units of Mountains Region of Rio de Janeiro Using Landsat-8 Data During the 2014 Drought | 10.11137/2018_1_318_327 | 2018 |
Contrasting patterns of the extreme drought episodes of 2005, 2010 and 2015 in the Amazon Basin | 10.1002/joc.5224 | 2018 |
Climatic and synoptic characterization of heat waves in Brazil | 10.1002/joc.5294 | 2018 |
Climatic Characterization of Heat Waves in Brazil | 10.11137/2018_3_333_350 | 2018 |
Extreme Drought Events over the Amazon Basin: The Perspective from the Reconstruction of South American Hydroclimate | 10.3390/w10111594 | 2018 |
Droughts Over Amazonia in 2005, 2010, and 2015: A Cloud Cover Perspective | 10.3389/feart.2018.00227 | 2018 |
Assigning dates and identifying areas affected by fires in Portugal based on MODIS data | 10.1590/0001-3765201720160707 | 2017 |
Burned Area Mapping in the Brazilian Savanna Using a One-Class Support Vector Machine Trained by Active Fires | 10.3390/rs9111161 | 2017 |
Future Projections of Fire Occurrence in Brazil Using EC-Earth Climate Model | 10.1590/0102-778631320150142 | 2016 |
AVALIAÇÃO DE ÍNDICES ESPECTRAIS PARA IDENTIFICAÇÃO DE ÁREAS QUEIMADAS NO CERRADO UTILIZANDO DADOS LANDSAT TM | 2016 | |
A User-Oriented Simplification of the ($V,W$) Burn-Sensitive Vegetation Index System | 10.1109/LGRS.2016.2614319 | 2016 |
An Algorithm for Burned Area Detection in the Brazilian Cerrado Using 4 µm MODIS Imagery | 10.3390/rs71115782 | 2015 |
Land-Surface Emissivity Retrieval in MSGSEVIRI TIR Channels Using MODIS Data | 10.1109/TGRS.2013.2290778 | 2014 |
Retrieving Middle-Infrared Reflectance Using Physical and Empirical Approaches: Implications for Burned Area Monitoring | 10.1109/TGRS.2011.2160186 | 2012 |
On a new coordinate system for improved discrimination of vegetation and burned areas using MIR/NIR information | 10.1016/j.rse.2011.02.006 | 2011 |
Retrieving middle-infrared reflectance for burned area mapping in tropical environments using MODIS | 10.1016/j.rse.2009.11.018 | 2010 |
Bias-corrected 2m-temperature forecasts in Portugal using Kalman filtering technique. | 10.1016/j.atmosres.2007.08.006 | 2008 |
GLOBAL BURNED-LAND ESTIMATION IN LATIN AMERICA USING MODIS COMPOSITE DATA | 10.1890/06-2148.1 | 2008 |
Thermal remote sensing in the framework of the SEN2FLEX project: field measurements, airborne data and applications | 10.1080/01431160802036516 | 2008 |
Validation of a temperature emissivity separation hybrid method from airborne hyperspectral scanner data and ground measurements in the SEN2FLEX field campaign | 10.1080/01431160802036532 | 2008 |
The North Atlantic Oscillation and European vegetation dynamics | 10.1002/joc.1682 | 2008 |
Eventos:
(0.60% eventos com DOI)
Titulo | DOI | Ano |
---|---|---|
The influence of temperature?moisture coupling on the occurrence of compound hot and dry events over South America: historical and future perspectives | 2024 | |
Projected Increases in Population Exposure to Droughts in the Iberian Peninsula under 1.5ᵒ and 2ᵒC Global Warming Levels | 2024 | |
Lightning-ignited fires in Portugal: A Comparison of satellite-derived and in-situ Databases | 2024 | |
ONFIRE Dataset: Harmonizing Decades of Wildland Fire Data | 2024 | |
Health impacts of long-range transported air pollution in South America: compound events, cascading hazards and the Pantanal 2020 fire crisis. | 2024 | |
ANÁLISE DA TIPOLOGIA DE ANOMALIAS TERMAIS IDENTIFICADAS POR PRODUTOS DE FOCOS DE CALOR NO RIO DE JANEIRO | 2023 | |
IMPACTOS DA URBANIZAÇÃO NOS FLUXOS DO BALANÇO DE ENERGIA SOBRE A REGIÃO METROPOLITANA DO RIO DE JANEIRO | 2023 | |
MAPEAMENTO DE ÁREAS QUEIMADAS NA AMAZÔNIA BRASILEIRA USANDO APRENDIZADO PROFUNDO | 2023 | |
Identificação e caracterização de incêndios naturais no Pantanal | 2023 | |
An insight into the severe 2019-2021 drought over Southeast South America from a daily to decadal and regional to large-scale variability perspective | 2023 | |
CeaseFire: from scientific knowledge to operational tools for fire combat and management | 2023 | |
A global database on holdover time of lightning-ignited wildfires | 2023 | |
Heat-related excess mortality in Brazilian urban areas: regional, demographic and social disparities | 2023 | |
Compound drought-heatwave conditions: a new threat for the fire-prone Cerrado? | 2023 | |
The Pantanal 2020 fire crisis: the impacts of transported smoke on air quality in the largest South American megacity. | 2023 | |
Identification of lighting ignited wildfires in Brazil and Portugal, based on satellite data and catalog information. | 2023 | |
Combating forest fires in the Pantanal through fire prevention and restoration | 2023 | |
Deforestation and agriculture drive Amazon fire activity, while droughts ride in the shotgun seat. | 2023 | |
ALARMES: near real-time burned area information system to support fire suppression and management activities in Brazil | 2023 | |
Mapping Burned areas in the Brazilian Amazon using deep learning and planetscope imagery | 2023 | |
Forecasting Meteorological fire danger with statistical model of fire radiative power | 2023 | |
Integrative Fire Management for the world's largest continuous tropical wetland is urgently need for the pantanal biodiversity and human population | 2023 | |
Compound Drought?Heat Extremes in the Pantanal Region during 2019?21: Causes and Environmental Impacts | 2022 | |
An early warning system of fire danger for the Brazilian Pantanal | 2022 | |
The impact of heat waves in forest fires over the Amazon rainforest | 2022 | |
Complex interactions of extreme events in Southern Europe and Brazil: a compound event perspective. | 2022 | |
Pantanal?s 2020 fire season in perspective: the case of a natural heritage reserve. | 2022 | |
Long term characterization of heat waves in Brazil and their impacts on mortality rates, | 2022 | |
The impact of compound drought and heatwave events on the unprecedented 2020 fire season in the Pantanal, Brazil | 2022 | |
Analysis of the low air quality in São Paulo under the effect of transported smoke from the unusual 2020 Pantanal? fires | 2022 | |
Emerging progress in compound drought and heatwave understanding in Brazil: the cascading impacts over the public health and wildfires | 2022 | |
Assessing the role of soil moisture?temperature coupling in triggering mega-heatwaves and wildfires in Brazil | 2022 | |
Inequalities in drought effects on non-external, circulatory, and respiratory mortality in the population of macro urban areas of Brazil | 2022 | |
The Impact of Unprecedented Pantanal Fires from Record Drought and Human Land Management Captured through Land Data Assimilation | 2022 | |
El Pantanal bajo asedio - El origen de la gran sequía que lo afecta | 2021 | |
Unveiling the diversity of regional burning patterns at the Brazilian savanna | 2021 | |
Marine heatwaves in the dynamics of the Pantanal´s historical drought and unprecedented fires | 2021 | |
Spatial patterns of fire patch size and shape complexity in the Brazilian savanna | 2021 | |
Historical Assessment of Compound Summer Drought and Heatwave Events in Southeast Brazil | 2021 | |
Burned area trends in the Brazilian Cerrado: the roles of climate and anthropogenic drivers | 2020 | |
Drivers Of Burned Area Patterns In Cerrado: The Case Of Matopiba Region | 10.1109/lagirs48042.2020.9165665 | 2020 |
Ranking Of Daily Satellite-Derived Precipitation Extremes For The Orbig Pipeline In Rio De Janeiro | 2020 | |
Disentangling burned area drivers over the Brazilian savanna | 2020 | |
Drought and heatwave concurrent events in Southeast Brazil | 2020 | |
Impacto do aquecimento global na área queimada futura do Cerrado Brasileiro | 2019 | |
Estudo do impacto de secas relacionadas com o ENSO na saúde da vegetação da America do Sul | 2019 | |
Drought and fire impacts respiratory diseases in the Amazon | 2019 | |
Burned area mapping in Brazil using NPP-VIIRS imagery and One Class Support Vector Machine | 2019 | |
Mortality Incidence levels associated with extremely high temperatures for the Metropolitan Region of Rio de Janeiro, Brazil | 2019 | |
Interrelations of MCD64 burned area and land use patterns in the Cerrado | 2019 | |
Heat waves impacts in fire incidence during the 2005 drought in Amazon forest | 2019 | |
The 1.5ºC global warming target and its impact on future burned area in the Brazilian savanna | 2019 | |
Understanding the impact of ENSO-related droughts over South American vegetation health | 2019 | |
RECORRÊNCIA DE DETECÇÃO DE FOCOS DE QUEIMA NO BIOMA CERRADO NO PERÍODO DE 2002 A 2017 | 2019 | |
Impacts of future climate on burned are over Cerrado MATOPIBA | 2019 | |
Compound effects of drought and heat waves on fire incidence over the Amazon. | 2019 | |
Spatial and temporal characteristics of fire patterns in the Cerrado using 18 years of satellite observations | 2019 | |
Vegetation recovery analysis over areas managed with prescribed fires: an approach using remote sensing data. | 2019 | |
Satellite active fire data validation using drones: Protocols and initial results from prescribed fires in Brazil. | 2019 | |
After 18 years of satellite burned area products, have we achieved a comprehensive knowledge of fire patterns in the Brazilian Savannah? | 2019 | |
Relation between heat wave events, synoptic patterns and mortality rates for the Metropolitan Region of Rio de Janeiro | 2018 | |
Hydroclimate reconstruction for the analysis of drought events in the Amazon basin | 2018 | |
MCD64A1 collection 6 validation over Brazilian Cerrado | 2018 | |
New generation of NPP-VIIRS sensor contribution to burned area mapping in Brazil | 2018 | |
Spatial and temporal drought patterns in Amazonia Basin in the last 3 decades | 2018 | |
Post fire emissions of greenhouse gases in impacted areas of Atlantic rainforest | 2018 | |
CeseFire: a website to assist fire managers in Portugal based on information derived from LSA SAF products | 2018 | |
On the use of the (V,W) Burn-Sensitive Vegetation Index System to monitor the spatiotemporal distribution of burned areas in Portugal | 2017 | |
Evaluation of last extreme drought events in Amazon basin using remotely sensing data | 2017 | |
Evaluating fire danger in Brazilian biomes: present and future patterns | 2017 | |
Validação e refinamento dos produtos de área queimada baseados em dados MODIS para a região do Jalapão/TO | 2017 | |
Avaliação de técnicas de compósitos multitemporais em imagens PROBA-V para o mapeamento de áreas queimadas | 2017 | |
Analise do comportamento espectral de superfícies de áreas urbanas e sua relação no mapeamento de áreas queimadas | 2017 | |
Adaptação dos Índices de queimada (V, W) utilizando informações do SWIR no sensor TM/Landsat | 2017 | |
Análise espaço-temporal da ocorrência de áreas queimadas no Cerrado para o período de 2005 a 2014 e sua relação com a precipitação | 2017 | |
Burned area mapping in Portugal based on satellite imagery in the near and middle infrared | 2017 | |
METEOROLOGICAL FIRE DANGER IN BRAZILIAN BIOMES FOR PRESENT AND FUTURE CLIMATE CONDITIONS | 2017 | |
Validation over Portugal of the Burned Area product of the LSA SAF | 2017 | |
Droughts trigger reduction of net primary production in the Amazon | 2017 | |
ANÁLISE DAS DUAS PRIMEIRAS SECAS EXTREMAS DO SÉCULO XXI NA AMAZÔNIA UTILIZANDO O PRODUTO SRDAS | 2017 | |
Relação entre eventos de Ondas de Calor e taxa de mortalidade para a Região Metropolitana do Rio de Janeiro | 2017 | |
Droughts drives net primary production reduction in the Amazon basin | 2017 | |
CONTRIBUIÇÃO DA NOVA GERAÇÃO DE SENSORES NPP-VIIRS PARA O MAPEAMENTO DE ÁREAS QUEIMADAS NO BRASIL | 2017 | |
Extreme drought events over Amazon basin: the perspective from regional reconstruction of South American hydroclimate | 2017 | |
Avaliação e perspectivas futuras do produto AQ30m | 2017 | |
ANÁLISE DAS SECAS EXTREMAS NA AMAZÔNIA UTILIZANDO O PRODUTO SRDAS | 2017 | |
RELAÇÃO ENTRE EVENTOS DE ONDAS DE CALOR E TAXAS DE MORTALIDADE PARA O ESTADO DO RIO DE JANEIRO | 2017 | |
ESTUDO DE CASO DE RISCO DE FOGO EM OUTUBRO DE 2014 NA REGIÃO SERRANA DO RIO DE JANEIRO | 2017 | |
DISTRIBUIÇÃO ESPAÇOTEMPORAL DE DESCARGAS ATMOSFÉRICAS ASSOCIADAS ÀS TEMPESTADES SEVERAS NA CIDADE DO RIO DE JANEIRO E ARREDORES | 2017 | |
ANÁLISE ESPAÇOTEMPORAL DO PERIGO METEOROLÓGICO DE FOGO NA AMÉRICA DO SUL UTILIZANDO DADOS DE REANÁLISE ERA INTERIM PARA O PERÍODO DE 19792005 | 2017 | |
Análise de secas extremas na Amazônia através do Índice de Precipitação Padronizado | 2017 | |
Satélites: a matemática na observação da Terra | 2017 | |
Multitemporal image compositing evaluation algorithms for PROBA-V burned area analysis | 2016 | |
Future projections of fire danger in Brazilian biomes in the 21st century | 2016 | |
Spatial and temporal patterns of burned area over Brazilian Cerrado from 2005 to 2015 using remote sensing data | 2016 | |
Validação do produto área queimada mensal 1 km (MODIS) | 2016 | |
Análise do risco de fogo meteorológico do bioma Mata Atlântica no período de 19982010 através de reconstrução hidroclimática regional | 2016 | |
Caracterização Do Risco De Fogo Meteorológico no Brasil Utilizando Dados Da Reanálise EraInterim Para O Período 1979 2005. | 2016 | |
Análise espaçotemporal da ocorrência de Área Queimada nos Biomas Brasileiros para o período 20052014 e sua relação com Variáveis Climáticas. | 2016 | |
Análise do comportamento espectral de superfícies de áreas urbanas e sua relação no mapeamento de áreas queimadas | 2016 | |
Relação dos nevoeiros com a influência da Maré,estimada por satélite na Região da Baia de Guanabará | 2016 | |
Estudo da distribuição espacial e temporal da incidência de descargas elétricas associadas às tempestades severas | 2016 | |
SATÉLITES AMBIENTAIS: A LUZ NA OBSERVAÇÃO DA TERRA | 2016 | |
CONECTADOS NO TEMPO | 2016 | |
ANÁLISE ESPAÇO-TEMPORAL DO PERIGO METEOROLÓGICO DE FOGO NO BRASIL UTILIZANDO DADOS DE REANÁLISES ERA.interim | 2016 | |
Características das secas do século 21 na Amazônia Brasileira: os casos de 2005, 2010 e 2015 | 2016 | |
EVOLUÇÃO E CARATERIZAÇÃO SINÓTICA DAS ONDAS DE CALOR NO BRASIL | 2016 | |
Future Projections Of Fire Danger For Brazilian Ecosystems Under Climate Change Scenarios | 2016 | |
UTILIZAÇÃO DO SATÉLITE LANDSAT-8 PARA ESTIMATIVA DE ÁREA QUEIMADA NA REGIÃO SERRANA DO RIO DE JANEIRO DURANTE A SECA 2014 | 2016 | |
Trends in fire risk and burned area in Brazil in the 20th century | 2016 | |
Validating MODIS burned area products over Cerrado region | 2015 | |
Spatio-temporal variability of burned area over Brazil for the period 2005-2010 using MODIS data | 2015 | |
Sensibilidad en la detección de áreas quemadas en tres ecosistemas vegetales de Bolivia, utilizando tres productos regionales | 2015 | |
Spectral indices and multi-temporal change image detection algorithms for burned area extraction in the Brazilian Cerrado | 2015 | |
Separabilidade dos índices espectrais na discriminação das queimadas em imagens Landsat TM do norte de Minas Gerais | 2015 | |
Prototype of LSA SAF Burnt Area Product | 2015 | |
FUTURE PROJECTIONS OF FIRE OCCURRENCE IN BRAZIL USING EC-EARTH CLIMATE MODEL | 2015 | |
ESTUDO DA FORMAÇAO DE NEVOEIROS NA BAIA DE GUANABARA A PARTIR DE DADOS DOS AERODROMOS E DA MARINHA DO BRASIL | 2015 | |
ANÁLISE DE ÍNDICES DE VEGETAÇÃO QUE APRESENTAM MELHOR SEPARABILIDADE ENTRE ÁREAS QUEIMADAS E ÁREAS NÃO QUEIMADAS. | 2015 | |
ESTUDO PRELIMINAR DA OCORRENCIA DE NEVOEIROS NA REGIÃO DA BAIA DE GUANABARA | 2015 | |
MAPEAMENTO DE ÁREAS QUEIMADAS EM UNIDADES DE CONSERVAÇÃO NA REGIÃO SERRANA DO RIO DE JANEIRO UTILIZANDO O SATÉLITE LANDSAT-8 | 2015 | |
CLIMATOLOGIA DE PARÂMETROS MICROFÍSICOS DAS NUVENS USANDO OS DADOS DO IINTERNATIONAL SATELLITE CLOUD CLIMATOLOGY PROJECT (ISCCP) | 2015 | |
DESENVOLVIMENTO E VERIFICAÇÃO DE MODELOS DE PREVISÃO DE NEVOEIRO UTILIZANDO REDES NEURAIS ARTIFICIAIS (RNA) E REGRESSÕES MÚLTIPLAS | 2015 | |
Validation of the Burned Area ?(V,W)? Modis Algorithm In Brazil | 2014 | |
Assigning dates to burned areas in Portugal based on NIR and the reflected component of MIR as derived from MODIS | 2014 | |
A Landsat-Tm/Oli Algorithm for Burned Areas in the Brazilian Cerrado ? Preliminary Results | 2014 | |
Comparative assessment of MODIS burned areas products | 2014 | |
ADAPTING (V,W) BURNED INDEX FOR AVHRR/METOP DATA USING SWIR INFORMATION | 2014 | |
Discriminating and assigning dates to burned areas in Portugal using MIR/NIR information of Terra and Aqua satellites | 2014 | |
Identificação e datação de áreas queimadas em Portugal com base em informação dos canais NIR e MIR dos satélites TERRA e AQUA | 2013 | |
An algorithm for burned area detection based on NIR and the reflected component of MIR as derived from MODIS | 2013 | |
Algoritmo automático de detecção de áreas queimadas em imagens MODIS ? aplicação na região do Jalapão, TO. | 2013 | |
AATSR burned area limitation estimates within the FIRE-CCI project. | 2013 | |
Datação de áreas queimadas em Portugal | 2013 | |
Assigning dates to burned areas in Portugal | 2013 | |
Using MODIS imagery to assign dates to maps of burn scars in Portugal | 2012 | |
ADAPTING (V,W) BURNED INDEX FOR AVHRR/METOP DATA USING SWIR INFORMATION | 2012 | |
Algoritmo automático de detecção de áreas queimadas utilizando dados MODIS: resultados preliminares | 2012 | |
Global maps of burnt área using AVHRR/Metop data | 2012 | |
Discriminating burned areas in Amazon and Cerrado regions using MIR/NIR information | 2011 | |
A UTILIZAÇÃO DA BASE DE DADOS GIMSS DE NDVI NO ÂMBITO DA DSA | 2009 | |
RETRIEVAL OF MIDDLE-INFRARED REFLECTANCE USING REMOTE SENSING DATA: THE TROPICAL POINT OF VIEW | 2009 | |
Using MSG/SEVIRI data for detection and monitoring of fire events over the Iberian Peninsula | 2009 | |
AN INTEGRATED FIRE PRODUCT FOR PORTUGAL | 2009 | |
DEVELOPING AN OPTIMAL SPECTRAL INDEX FOR BURNT SCARS IDENTIFICATION | 2009 | |
VALIDAÇÃO DE MAPAS DE EMISSIVIDADE MSG/SEVIRI UTILIZANDO O PRODUTO MODIS11C3 | 2008 | |
EFFECTS OF THE GEOMETRY OF ILLUMINATION ON THE RETRIEVAL OF MIR REFLECTANCE | 2008 | |
LAND SURFACE EMISSIVITY RATIONALE FOR A VALIDATION PROGRAMME | 2008 | |
ON THE USE OF MIR REFLECTANCE FOR BURNED AREA IDENTIFICATION | 2008 | |
SISTEMA DE MOTITORAMENTO DE QUEIMADAS ? INPE (BRASIL) | 2007 | |
LAND-SURFACE TEMPERATURE RETRIEVAL FROM MSG/SEVIRI OVER BRAZIL USING EMISSIVITY MAPS DERIVED FROM MODIS DATA | 2007 | |
REFINAMENTO DE UM MÉTODO DE ÁREA QUEIMADA, E VALIDAÇÃO UTILIZANDO IMAGENS CBERS NO NORTE DE MATO GROSSO, BRASIL | 2007 | |
VALIDATION OF THE LSA SAF LAND-SURFACE EMISSIVITY PRODUCT USING MODIS DATA | 2007 | |
A NEW OPTIMAL INDEX FOR BURNT AREA DISCRIMINATION IN SATELLITE IMAGERY | 2007 | |
USING 21 YEARS OF AVHRR DATA TO ASSESS THE IMPACT OF THE NORTH ATLANTIC OSCILLATION ON EUROPEAN VEGETATION DYNAMICS | 2006 | |
VALIDATION OF A TEMPERATURE EMISSIVITY SEPARATION HYBRID METHOD FROM AIRBORNE HYPERSPECTRAL SCANNER DATA AND GROUND MEASUREMENTS IN THE SEN2FLEX FIELD CAMPAIGNS | 2006 | |
THERMAL REMOTE SENSING IN THE FRAMEWORK OF THE SEN2FLEX PROJECT: FIELD MEASUREMENTS, AIRBORNE DATA AND APPLICATIONS | 2006 | |
KALMAN FILTERING OF 2m-TEMPERATURE FORECAST IN PORTUGAL | 2006 | |
ASSINATURA ESPECTRAL DE ÁREAS QUEIMADAS EM PRODUTOS MODIS | 2006 | |
LAND-SURFACE EMISSIVITY ESTIMATION IN METEOSAT-8/SEVIRI TIR BANDS USING MODIS DATA | 2006 | |
IDENTIFICATION OF EMPIRICAL RELANTIONSHIPS BETWEEN NORTH ATLANTIC OSCILLATION AND EUROPEAN VEGETATION DYNAMICS USING SATELLITE DATA | 2006 | |
ANÁLISE DA ASSINATURA ESPECTRAL DE ÁREAS QUEIMADAS EM PRODUTOS MODIS. | 2006 | |
AVALIAÇÃO DA RESPOSTA ESPECTRAL DOS CANAIS 20 E NDVI DO MODIS/AQUA NA ÁREA QUEIMADA DO PARQUE NACIONAL DE ILHA GRANDE ? PR ? BRASIL | 2006 | |
ASSESSMENT OF FIRE WEATHER INDEX FORECASTS IN CONTINENTAL PORTUGAL | 2005 | |
UTILIZAÇÃO DO FILTRO DE KALMAN PARA CORRECÇÃO DAS PREVISÕES DO CICLO DIÁRIO DE TEMPERATURA A 2 METROS | 2005 | |
APLICAÇÃO DO FILTRO DE KALMAN NA CORRECÇÃO DAS PREVISÕES DE TEMPERATURA À SUPERFÍCIE DO MODELO DO ECMWF | 2004 |