N: 90 S: -90 E: 180 W: -180
Description
The MOD16A2 Version 6.1 Evapotranspiration/Latent Heat Flux product is an 8-day composite dataset produced at 500 meter (m) pixel resolution. The algorithm used for the MOD16 data product collection is based on the logic of the Penman-Monteith equation, which includes inputs of daily meteorological reanalysis data along with Moderate Resolution Imaging Spectroradiometer (MODIS) remotely sensed data products such as vegetation property dynamics, albedo, and land cover.
Provided in the MOD16A2 product are layers for composited Evapotranspiration (ET), Latent Heat Flux (LE), Potential ET (PET) and Potential LE (PLE) along with a quality control layer. Two low resolution browse images, ET and LE, are also available for each MOD16A2 granule.
The pixel values for the two Evapotranspiration layers (ET and PET) are the sum of all eight days within the composite period and the pixel values for the two Latent Heat layers (LE and PLE) are the average of all eight days within the composite period. Note that the last acquisition period of each year is a 5 or 6-day composite period, depending on the year.
Known Issues
- Operational and uncertainty issues are provided under Section 3 in the User Guide.
- 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 (MOD16A2) followed by the Julian Date of Acquisition formatted as AYYYYDDD (A2025201), the Tile Identifier which is horizontal tile and vertical tile provided as hXXvYY (h07v05), the Version of the data collection (061), the Julian Date and Time of Production designated as YYYYDDDHHMMSS (2025217003056), and the Data Format (hdf).
Documents
USER'S GUIDE
ALGORITHM THEORETICAL BASIS DOCUMENT (ATBD)
PRODUCT QUALITY ASSESSMENT
SCIENCE DATA PRODUCT VALIDATION
Publications Citing This Dataset
| Title | Year Sort ascending | Author | Topic |
|---|---|---|---|
| Soil moisture as an essential component for delineating and forecasting agricultural rather than meteorological drought | Chatterjee, Sumanta, Desai, Ankur R., Zhu, Jun, Townsend, Philip A., Huang, Jingyi | Land Use/Land Cover Classification, Evapotranspiration, Latent Heat Flux | |
| Remote sensing of water use efficiency in Southwest Chinas karst area | Shi, Xinyu, Bai, Shuang, Chen, Wei | Land Use/Land Cover Classification, Photosynthesis, Primary Production, Vegetation Productivity, Evapotranspiration, Latent Heat Flux | |
| Remote sensing-aided rainfall-runoff modeling in the tropics of Costa Rica | Arciniega-Esparza, Saul, Birkel, Christian, Chavarria-Palma, Andres, Arheimer, Berit, Brena-Naranjo, Jose Agustin | Evapotranspiration, Latent Heat Flux, Photosynthesis, Primary Production | |
| Remote sensing-based assessment of land degradation and drought impacts over terrestrial ecosystems in Northeastern Brazil | de Oliveira, Michele L., dos Santos, Carlos A.C., de Oliveira, Gabriel, Silva, Madson T., da Silva, Bernardo B., Cunha, John E. de B.L., Ruhoff, Anderson, Santos, Celso A.G. | Photosynthesis, Primary Production, Vegetation Productivity, Evapotranspiration, Latent Heat Flux | |
| Resolve the ClearSky Continuous Diurnal Cycle of HighResolution ECOSTRESS Evapotranspiration and Land Surface Temperature | Wen, Jiaming, Fisher, Joshua B., Parazoo, Nicholas C., Hu, Leiqiu, Litvak, Marcy E., Sun, Ying | Reflectance, Atmospheric Radiation, Longwave Radiation, Shortwave Radiation, Radiative Flux, Radiative Forcing, Surface Radiative Properties, Albedo, Emissivity, Cloud Properties, Cloud Fraction, Cloud Optical Depth/Thickness, Skin Temperature, Skin Temperature, Sea Surface Skin Temperature, Geopotential Height, Altitude, Surface Temperature, Upper Air Temperature, Dew Point Temperature, Air Temperature, Cloud Top Temperature, Atmospheric Winds, Surface Winds, U/V Wind Components, Upper Level Winds, U/V Wind Components, Vertical Wind Velocity/Speed, Atmospheric Pressure, Sea Level Pressure, Cloud Top Pressure, Sea Level Pressure, Surface Pressure, Specific Humidity, Total Precipitable Water, Cloud Liquid Water/Ice, Atmospheric Water Vapor, Atmospheric Ozone, Oxygen Compounds, Boundary Layer Winds, Total Ozone, Evapotranspiration, Latent Heat Flux, Ecosystem Functions, Precipitation Amount, Maximum/Minimum Temperature, Terrestrial Ecosystems, Land Use/Land Cover Classification, Trace Gases/Trace Species, Soil Gas/Air | |
| Revising precipitationwater storagesvegetation signatures with GRACE-based data assimilation | Gerdener, Helena, Kusche, Jurgen, Schulze, Kerstin, Ghazaryan, Gohar, Dubovyk, Olena | Leaf Area Index (LAI), Fraction Of Absorbed Photosynthetically Active Radiation (fapar), Evapotranspiration, Latent Heat Flux | |
| Using an object-based machine learning ensemble approach to upscale evapotranspiration measured from eddy covariance towers in a subtropical wetland | Zhang, Caiyun, Brodylo, David, Rahman, Mizanur, Rahman, Md Atiqur, Douglas, Thomas A., Comas, Xavier | Land Surface Temperature, Emissivity, Evapotranspiration, Latent Heat Flux, Leaf Area Index (LAI), Fraction Of Absorbed Photosynthetically Active Radiation (fapar), Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Reflectance | |
| Uncovering current pyroregions in Italy using wildfire metrics | Elia, Mario, Giannico, Vincenzo, Ascoli, Davide, Arganaraz, Juan Pablo, DEste, Marina, Spano, Giuseppina, Lafortezza, Raffaele, Sanesi, Giovanni | Reflectance, Evapotranspiration, Photosynthesis, Primary Production, Latent Heat Flux, Land Surface Temperature, Emissivity | |
| Understanding the role of initial soil moisture and precipitation magnitude in flood forecast using a hydrometeorological modelling system | Yin, Dongxiao, Xue, Z. George, Bao, Daoyang, RafieeiNasab, Arezoo, Huang, Yongjie, Morales, Mirce, Warner, John C. | Evapotranspiration, Latent Heat Flux | |
| The seasonal response of vegetation water use efficiency to temperature and precipitation in the Loess Plateau, China | Hou, Qingqing, Pei, Tingting, Yu, Xiaojun, Chen, Ying, Ji, Zhenxi, Xie, Baopeng | Land Use/Land Cover Classification, Photosynthesis, Primary Production, Vegetation Productivity, Evapotranspiration, Latent Heat Flux | |
| Towards SDG 15.3: The biome context as the appropriate degradation monitoring dimension | Xoxo, Sinetemba, Mantel, Sukhmani, De Vos, Alta, Mahlaba, Bawinile, Le Maitre, David, Tanner, Jane | Evapotranspiration, Latent Heat Flux | |
| Tracking a blue wave of ephemeral water across arid southern Africa | Schaffer-Smith, Danica, Swift, Margaret, Killea, Allison, Brennan, Angela, Naidoo, Robin, Swenson, Jennifer J | Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Evapotranspiration, Latent Heat Flux | |
| Thermal and moisture response to land surface changes across different | Liu, Tingxiang, Yu, Lingxue, Bu, Kun, Yang, Jiuchun, Yan, Fengqin, Zhang, Shuwen, Li, Guangshuai, Jiao, Yue, Liu, Shizhuo | Evapotranspiration, Photosynthesis, Primary Production, Latent Heat Flux, Land Surface Temperature, Emissivity | |
| Cross-scale evaluation of dynamic crop growth in WRF and Noah-MP-Crop | Partridge, Trevor F., Winter, Jonathan M., Kendall, Anthony D., Hyndman, David W. | Leaf Area Index (LAI), Fraction Of Absorbed Photosynthetically Active Radiation (fapar), Evapotranspiration, Latent Heat Flux | |
| Cross-scale monitoring of habitat suitability changes using satellite time series and ecological niche models | Arenas-Castro, Salvador, Sillero, Neftali | Reflectance, Photosynthesis, Primary Production, Vegetation Productivity, Land Surface Temperature, Emissivity, Evapotranspiration, Latent Heat Flux, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Crowdsourced air temperatures contrast satellite measures of the urban | Venter, Zander S., Chakraborty, Tirthankar, Lee, Xuhui | Land Surface Temperature, Emissivity, Evapotranspiration, Latent Heat Flux, Albedo, Anisotropy | |
| Crop harvested area, not yield, drives variability in crop production in | Rezaei, Ehsan Eyshi, Ghazaryan, Gohar, Moradi, Rooholla, Dubovyk, Olena, Siebert, Stefan | Land Use/Land Cover Classification, Photosynthesis, Primary Production, Vegetation Productivity, Evapotranspiration, Latent Heat Flux | |
| Comparison of blue and green water fluxes for different land use classes in a semi-arid cultivated catchment using remote sensing | Msigwa, Anna, Komakech, Hans C., Salvadore, Elga, Seyoum, Solomon, Mul, Marloes L., van Griensven, Ann | Evapotranspiration, Latent Heat Flux, Surface Pressure, Heat Flux, Longwave Radiation, Shortwave Radiation, Surface Temperature, Humidity, Surface Winds, Rain, Precipitation Rate, Snow, Soil Moisture/Water Content, Soil Temperature, Land Surface Temperature, Snow Water Equivalent, Runoff | |
| Evaluating the added value of multi-variable calibration of SWAT with remotely sensed evapotranspiration data for improving hydrological modeling | Shah, Suraj, Duan, Zheng, Song, Xianfeng, Li, Runkui, Mao, Huihui, Liu, Junzhi, Ma, Tianxiao, Wang, Mingyu | Evapotranspiration, Latent Heat Flux, Topographical Relief Maps, Terrain Elevation, Digital Elevation/Terrain Model (DEM), Total Surface Precipitation Rate | |
| Evaluating Downscaling Factors of Microwave Satellite Soil Moisture Based on Machine Learning Method. Remote Sens. 2021, 13, 133 | Sun, Hao, Cui, Yajing | Albedo, Anisotropy, Evapotranspiration, Latent Heat Flux, Leaf Characteristics, Photosynthetically Active Radiation, Leaf Area Index (LAI), Fraction Of Absorbed Photosynthetically Active Radiation (fapar), Reflectance, Land Surface Temperature, Emissivity | |
| Estimation of land-cover linkage to trends in hydrological variables of river basins in the Indian sub-continent using satellite observation and model outputs | Kansara, Prakrut, Lakshmi, Venkataraman | Evapotranspiration, Latent Heat Flux, Total Surface Precipitation Rate | |
| ETWatch cloud: APIs for regional actual evapotranspiration data | Wu, Fangming, Wu, Bingfang, Zhu, Weiwei, Yan, Nana, Ma, Zonghan, Wang, Linjiang, Lu, Yuming, Xu, Jiaming | Land Surface Temperature, Emissivity, Evapotranspiration, Latent Heat Flux, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Fraction Of Absorbed Photosynthetically Active Radiation (fapar), Leaf Area Index (LAI), Albedo | |
| Evaluation of the MOD16A2 evapotranspiration product in an agricultural area of Argentina, the Pampas region | Degano, Maria Florencia, Rivas, Raul Eduardo, Carmona, Facundo, Niclos, Raquel, Sanchez, Juan Manuel | Evapotranspiration, Latent Heat Flux | |
| Evaluations of MODIS and microwave based satellite evapotranspiration | Wang, Yipu, Li, Rui, Hu, Jiheng, Wang, Xuewen, Kabeja, Crispin, Min, Qilong, Wang, Yu | Evapotranspiration, Latent Heat Flux | |
| Evapotranspiration Changes over the European Alps: Consistency of Trends | Castelli, Mariapina | Evapotranspiration, Photosynthesis, Primary Production, Latent Heat Flux, Land Use/Land Cover Classification, Leaf Area Index (LAI), Fraction Of Absorbed Photosynthetically Active Radiation (fapar) |