N: 60 S: -56 E: 180 W: -180
Description
The Land Processes Distributed Active Archive Center (LP DAAC) is responsible for the archive and distribution of the NASA Making Earth System Data Records for Use in Research Environments (MEaSUREs) Digital Elevation Model (DEM) version 1 (NASADEM_HGT) dataset, which provides global elevation data at 1 arc second spacing.
NASADEM data products were derived from original telemetry data from the Shuttle Radar Topography Mission (SRTM), a collaboration between NASA and the National Geospatial-Intelligence Agency (NGA), as well as participation from the German and Italian space agencies. SRTM's primary focus was to generate a near-global DEM of the Earth using radar interferometry. It was a primary component of the payload on space shuttle Endeavour during its STS-99 mission, which was launched on February 11, 2000, and flew for 11 days.
In addition to Terra Advanced Spaceborne Thermal and Reflection Radiometer (ASTER) Global Digital Elevation Model (GDEM) Version 2 data, NASADEM also relied on Ice, Cloud, and Land Elevation Satellite (ICESat) Geoscience Laser Altimeter System (GLAS) ground control points of its lidar shots to improve surface elevation measurements that led to improved geolocation accuracy. Other reprocessing improvements include the conversion to geoid reference and the use of GDEMs and Advanced Land Observing Satellite Panchromatic Remote-sensing instrument for Stereo Mapping (PRISM) AW3D30 DEM, and interpolation for void filling.
NASADEM are distributed in 1 degree latitude by 1 degree longitude tiles and consist of all land between 60° N and 56° S latitude. This accounts for about 80% of Earth's total landmass.
NASADEM_HGT data product layers include DEM, number of scenes (NUM), and an updated SRTM water body dataset (water mask). The NUM layer indicates the number of scenes that were processed for each pixel and the source of the data. A low-resolution browse image showing elevation is also available for each NASADEM_HGT granule.
The global 1 arc second NASADEM product is also available in NetCDF4 format as the NASADEM_NC dataset with the source of each elevation pixel in the corresponding NASADEM_NUMNC product.
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 latitude and longitude of the lower left corner of the tile (s01w047) followed by the File Extension/Variable (hgt).
Documents
Publications Citing This Dataset
| Title | Year Sort ascending | Author | Topic |
|---|---|---|---|
| Climate change impacts on groundwater: a growing challenge for water resources sustainability in Brazil | Hirata, Ricardo, Goodarzi, Leila, Rorig, Fernando Schuh, Alves, Lincoln Muniz, Bertolo, Reginaldo | Evapotranspiration, Photosynthesis, Primary Production, Latent Heat Flux, Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Environmental Factors Linked to Birth Outcomes in Urban Localities | Campero, Micaela Natalia, Roman, Maria Dolores, Scavuzzo, Carlos Marcelo | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Environmental spatial assessment at ranch scale: a tool for optimizing livestock management in Argentine forests | Varela, Santiago Agustin, Calamari, Noelia Cecilia, Trinco, Fabio Daniel, Diez, Juan Pablo, Weigandt, Mariana, Barzan, Flavia Romina, Lezana, Lucrecia, Eclesia, Roxana Paola, Lopez, Dardo Ruben, Coria, Ruben Dario, Peri, Pablo Luis, Umana, Fernando Javier, Raffo, Fernando, Gazzotti, Juan Ignacio, de la Pena, Carlos, Wilson, Marcelo, Gabioud, Emmanuel, Hernandez, Hernan, Canavelli, Sonia Beatriz | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Multi-Source and Multitemporal Urban and Rural Settlement Mapping Under | Li, Xiaopeng, Zhou, Guangsheng, Zhou, Li, Lv, Xiaomin, He, Xiaohui, Tian, Zhihui | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Multi-Sensor Fusion and Machine Learning for Forest Age Mapping in Southeastern Tibet | Chi, Zelong, Xu, Kaipeng | Photosynthesis, Primary Production, Vegetation Productivity, Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps, Biomass, Forests, Grasslands, Alpine/Tundra | |
| Multimodal deep learning enables forest height mapping from patchy | Chen, Man, Dong, Wenquan, Yu, Hao, Woodhouse, Iain H., Ryan, Casey M., Liu, Haoyu, Georgiou, Selena, Mitchard, Edward T.A. | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Inter-comparison of medium-resolution satellite albedo retrieval techniques over snow and ice | Fuchs, Pablo, Purdie, Heather, Anderson, Brian, MacDonell, Shelley, Dadic, Ruzica, Katurji, Marwan | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps, Reflectance, Albedo, Anisotropy | |
| Mapping snow cover frequency at 30 m for studying seasonal variations | Wang, Guigang, Che, Tao, Dai, Liyun, Hu, Yanxing, Wu, Jun, Meng, Saiyao, Kong, Chuilei, Wang, Jing, Feng, Dongdong, Wang, Shijie, Li, Xuemei | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Open Inventories of Rainfall-Triggered Landslides | Vershel, Rachel (Soobitsky), Sutton, Jessica, Stanley, Thomas, Amatya, Pukar, Kirschbaum, Dalia | Precipitation, Precipitation Amount, Precipitation Rate, Snow, Rain, Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Optimizing mangrove afforestation site selection in gulf cooperation council nations using remote sensing and machine learning | Dutta Roy, Abhilash, Mohan, Midhun, Hendy, Ian, AlMealla, Reem, Watt, Michael S., Burt, John A., Torres-Florez, Juan Pablo, Almansoori, Amna, Alzahlawi, Nessrine, Abdullah, Meshal, Ali, Tarig, Nithyanandan, Manickam, Aboobacker, Valliyil Mohammed, de-Miguel, Sergio | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Advancing gully initiation modelling by means of a Curve Number (CN) | De Geeter, Sofie, Setargie, Tadesual Asamin, Haregeweyn, Nigussie, Verstraeten, Gert, Poesen, Jean, Tsunekawa, Atsushi, Vanmaercke, Matthias | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Advancing oyster habitat mapping: Integrating satellite remote sensing | P, Pandi Selvam, Mohan, Midhun, Dutta Roy, Abhilash, Ali, Tarig, Watt, Michael S., Samara, Fatin | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| An integrated geographic information system (GIS) and analytical hierarchy process (AHP)-based approach for drone-optimized large-scale flood imaging | Nazir, Muhammad Farhan, Atif, Salman, Hussain, Ejaz | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| An improved framework to prioritize sub-watersheds: Construction of Watershed Morphometric Composite Index (WMCI) for mountain soil conservation | Ghimire, Shravan Kumar, Lu, Yafeng, Wang, Yukuan | Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| A Spatial Baseline of China's Blue Carbon Stocks for Improved Monitoring, Management, and Protection | Sun, Shaobo, Song, Zhaoliang, Guo, Laodong, Duarte, Carlos M., Macreadie, Peter I., Zhang, Zhen, Fang, Yunying, Chen, Baozhang, Wang, Zhengang, Wang, Weiqi, Wang, Yidong, Fu, Dongjie, Li, Yuan, Wang, Yafei, Wang, Hailong, Liu, CongQiang | Population Size, Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| A geophysical and glaciological survey of the highest tropical mountain glaciers (Mt. Huascaran, Andes) | Kutuzov, Stanislav, Thompson, Lonnie G., Bolzan, John F., Lavrentiev, Ivan, Chernyakov, Gleb, Schoessow, Forrest | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| A Preliminary Seismic Hazard Study in Terms of Arias Intensity in Eastern Egypt: Insights into Its Seismically-Induced Landslide Potential | Pelaez, Jose A., Delgado, Jose, Sawires, Rashad | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| A novel framework for assessing shrublines and their geophysical | Ren, Zexi, Zhang, Lin, Wang, Qianlong, Hu, Wanjun, Shi, Zhou | Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| A framework of the planning of priority revegetation areas for debris | Lu, Yafeng, Zhou, Xiaokang | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| A multi-source remote sensing-based geocommunication tool for global flood monitoring and management | Hamidi, Ebrahim, Peter, Brad G., Moftakhari, Hamed, Moradkhani, Hamid | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| A Multicomponent Collaborative Fossil Fuel Power Plants Detection | Li, Ning, Jing, Min, Geng, Wanxuan, Dongye, Shengkun, Chen, Hui, Ji, Chen, Cheng, Liang | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Generation and Assessment of Digital Elevation Models by Combining | Yan, Lili, Li, Hongxing, Hao, Xiaohua, Wang, Jian, Yin, Zhenliang, Liu, Junyan | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Has the Karakoram anomaly persisted over the past two decades? | Zhou, Shuaibo, Sun, Zhangli, Abowarda, Ahmed Samir, Aletoum, Ehab, Huang, Qi, Lin, Xu, Liu, Gang | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Automated Snow Cover Detection On Mountain Glaciers Using Spaceborne Imagery And Machine Learning | Aberle, Rainey, Enderlin, Ellyn, O'Neel, Shad, Florentine, Caitlyn, Sass, Louis, Dickson, Adam, Marshall, Hans-Peter, Flores, Alejandro | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Comparison of Object-Based and Pixel-Based Classification Using Topographic and Meteorological Data for Airshed in Thailand | Kaewmesri, Pramet, Chansury, Woranut, Petchprayoon, Pakorn, Khaocharoen, Peerapat, Koedkurang, Kanjana, Sroysonthawornkul, Kanmanee | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps |