N: 90 S: -90 E: 180 W: -180
Description
The Terra and Aqua combined MCD64A1 Version 6.1 Burned Area data product is a monthly, global gridded 500 meter (m) product containing per-pixel burned-area and quality information. The MCD64A1 burned-area mapping approach employs 500 m Moderate Resolution Imaging Spectroradiometer (MODIS) Surface Reflectance imagery coupled with 1 kilometer (km) MODIS active fire observations. The algorithm uses a burn sensitive Vegetation Index (VI) to create dynamic thresholds that are applied to the composite data. The VI is derived from MODIS shortwave infrared atmospherically corrected surface reflectance bands 5 and 7 with a measure of temporal texture. The algorithm identifies the date of burn for the 500 m grid cells within each individual MODIS tile. The date is encoded in a single data layer as the ordinal day of the calendar year on which the burn occurred with values assigned to unburned land pixels and additional special values reserved for missing data and water grid cells.
The data layers provided in the MCD64A1 product include Burn Date, Burn Data Uncertainty, Quality Assurance, along with First Day and Last Day of reliable change detection of the year.
Known Issues
- For complete information about known issues please refer to the MODIS/VIIRS Land Quality Assessment website.
Version Description
Product Summary
Citation
Citation is critically important for dataset documentation and discovery. This dataset is openly shared, without restriction, in accordance with the EOSDIS Data Use and Citation Guidance.
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File Naming Convention
The file name begins with the Product Short Name (MCD64A1) followed by the Julian Date of Acquisition formatted as AYYYYDDD (A2025152), the Tile Identifier which is horizontal tile and vertical tile provided as hXXvYY (h06v03), the Version of the data collection (061), the Julian Date and Time of Production designated as YYYYDDDHHMMSS (2025220161136), and the Data Format (hdf).
Documents
USER'S GUIDE
ALGORITHM THEORETICAL BASIS DOCUMENT (ATBD)
PRODUCT QUALITY ASSESSMENT
SCIENCE DATA PRODUCT VALIDATION
Dataset Resources
Publications Citing This Dataset
| Title | Year Sort ascending | Author | Topic |
|---|---|---|---|
| Savanna plant communities in the wetter parts of the Indonesian archipelago | Sutomo, van Etten, Eddie | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Satellite analysis of the environmental impacts of armed-conflict in Rakhine, Myanmar | Aung, Thiri Shwesin | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Satellite-Derived Variation in Burned Area in China from 2001 to 2018 and Its Response to Climatic Factors | Wang, Xiaoxiao, Di, Zhenhua, Li, Mei, Yao, Yunjun | Land Use/Land Cover Classification, Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Spatio-temporal analysis of burning areas in the state of maranhao based on modis images and random forest classification | Pacheco, Admilson Da Penha, Da Silva Junior, Juarez Antonio | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Spatio-temporal dynamics of burnt areas in federal protected areas in the south-east of european russia | Shinkarenko, Stanislav S., Ivanov, Nikita M., Berdengalieva, Asel N. | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Spatiotemporal patterns of burned areas, fire drivers, and fire probability across the equatorial Andes | Zapata-Rios, Xavier, Lopez-Fabara, Carmen, Navarrete, Abigail, Torres-Paguay, Sandra, Flores, Miguel | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area, Land Surface Temperature, Emissivity | |
| Spatio-temporal patterns of wildfires in Siberia during 2001-2020 | Tomshin, Oleg, Solovyev, Vladimir | Land Use/Land Cover Classification, Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Recent trends in the fire dynamics in Brazilian Legal Amazon: Interaction between the ENSO phenomenon, climate and land use | Ferreira Barbosa, Maria Lucia, Delgado, Rafael Coll, Forsad de Andrade, Caio, Teodoro, Paulo Eduardo, Silva Junior, Carlos Antonio, Wanderley, Henderson Silva, Capristo-Silva, Guilherme Fernando | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Spring fires in RussiaResults from participatory burned area mapping with Sentinel-2 imagery | Glushkov, Igor, Zhuravleva, Ilona, McCarty, Jessica L, Komarova, Anna, Drozdovsky, Alexey, Drozdovskaya, Marina, Lupachik, Vilen, Yaroshenko, Alexey, Stehman, Stephen V, Prishchepov, Alexander V | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Uni-Temporal Multispectral Imagery for Burned Area Mapping with Deep Learning | Hu, Xikun, Ban, Yifang, Nascetti, Andrea | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Unveiling the factors responsible for Australias black summer fires of 2019/2020 | Levin, Noam, Yebra, Marta, Phinn, Stuart | Reflectance, Anisotropy, Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Uav assisted spatiotemporal analysis and management of bushfires: A case study of the 2020 victorian bushfires | Munawar, Hafiz Suliman, Ullah, Fahim, Khan, Sara Imran, Qadir, Zakria, Qayyum, Siddra | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area, Surface Thermal Properties, Land Surface Temperature, THERMAL ANOMALIES, Reflectance | |
| Tropical Dry Forest Resilience to Fire Depends on Fire Frequency and | Hartung, Maximilian, Carreno-Rocabado, Geovana, Pena-Claros, Marielos, van der Sande, Masha T. | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Structural diversity and tree density drives variation in the | Godlee, John L., Ryan, Casey M., Bauman, David, Bowers, Samuel J., Carreiras, Joao M. B., Chisingui, Antonio Valter, Cromsigt, Joris P. G. M., Druce, Dave J., Finckh, Manfred, Goncalves, Francisco Maiato, Holdo, Ricardo M., Makungwa, Steve, McNicol, Iain M., Mitchard, Edward T. A., Muchawona, Anderson, Revermann, Rasmus, Ribeiro, Natasha Sofia, Siampale, Abel, Syampungani, Stephen, Tchamba, Jose Joao, Tripathi, Hemant G., Wallenfang, Johannes, te Beest, Mariska, Williams, Mathew, Dexter, Kyle G. | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| The 2019-2020 Australian Drought and Bushfires Altered the Partitioning | Kumar, Sujay V., Holmes, Thomas, Andela, Niels, Dharssi, Imtiaz, Vinodkumar, Hain, Christopher, PetersLidard, Christa, Mahanama, Sarith P., Arsenault, Kristi R., Nie, Wanshu, Getirana, Augusto | Leaf Characteristics, Photosynthetically Active Radiation, Leaf Area Index (LAI), Fraction Of Absorbed Photosynthetically Active Radiation (fapar), Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Temporal record and spatial distribution of fire foci in State of Minas Gerais, Brazil | Marinho, Ana Aguiar Real, Gois, Givanildo de, Oliveira-Junior, Jose Francisco de, Correia Filho, Washington Luiz Felix, Santiago, Dimas de Barros, Silva Junior, Carlos Antonio da, Teodoro, Paulo Eduardo, de Souza, Amaury, Capristo-Silva, Guilherme Fernando, Freitas, Welington Kiffer de, Rogerio, Josiclea Pereira | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area, Emissivity, Land Surface Temperature, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | |
| The smokescreen of Russian protected areas | Cazzolla Gatti, Roberto, Velichevskaya, Alena, Dudko, Anastasia, Fabbio, Luca, Notarnicola, Claudia | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Study on blazing wildfires at the outeniqua pass in South Africa during the october/november 2018 period | Kganyago, Mahlatse, Govender, Kogieluxmie, Shikwambana, Lerato, Sivakumar, Venkataraman | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Spatiotemporal variation of the burned area and its relationship with climatic factors in central kazakhstan | Xu, Yongfang, Lin, Zhaohui, Wu, Chenglai | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Spatiotemporal variations and uncertainty in crop residue burning emissions over north china plainImplication for atmospheric co2 simulation | Fu, Yu, Gao, Hao, Liao, Hong, Tian, Xiangjun | Land Use/Land Cover Classification, Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Accuracy and spatiotemporal distribution of fire in the Brazilian biomes from the MODIS burned-area products | Santana, Nickolas Castro, de Carvalho, Osmar Abilio, Gomes, Roberto Arnaldo Trancoso, Guimaraes, Renato Fontes | Fire Occurrence, Surface Thermal Properties, Land Surface Temperature, THERMAL ANOMALIES, Fire Ecology, Biomass Burning, Wildfires, Burned Area | |
| A trend of increasing burned areas in Iraq from 2001 to 2019 | Rasul, Azad, Ibrahim, Gaylan R. Faqe, Hameed, Hasan M., Tansey, Kevin | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| An Adaptive and Extensible System for Satellite-Based, Large Scale Burnt Area Monitoring in Near-Real Time | Nolde, Michael, Plank, Simon, Riedlinger, Torsten | Reflectance, Land Use/Land Cover Classification, Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area, Infrared Radiance, REFLECTED INFRARED, Visible Radiance, Surface Thermal Properties, Land Surface Temperature, THERMAL ANOMALIES | |
| A remote sensing and meteorological data-based methodology for wildfire danger assessment for China | Xie, Qian, Quan, Xingwen, He, Binbin | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| A satellite data driven approach to monitoring and reporting fire disturbance and recovery across boreal and temperate forests | Hislop, Samuel, Haywood, Andrew, Jones, Simon, Soto-Berelov, Mariela, Skidmore, Andrew, Nguyen, Trung H. | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area |