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 |
|---|---|---|---|
| Computational design for landscape architects | Harmon, Brendan | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Controls over Fire Characteristics in Siberian Larch Forests | Webb, Elizabeth E., Alexander, Heather D., Loranty, Michael M., Talucci, Anna C., Lichstein, Jeremy W. | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Deep Learning-Based Travel Time Estimation in Hiking with Consideration of Individual Walking Ability | Asako, Mizuho, Tahara, Yasuyuki, Ohsuga, Akihiko, Sei, Yuichi | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Detection of karst depression in Brazil comparing different semantic and | da Rocha Nunes de Castro, Heitor, de Carvalho Junior, Osmar Abilio, de Carvalho, Osmar Luiz Ferreira, Gomes, Roberto Arnaldo Trancoso, Guimaraes, Renato Fontes | Terrain Elevation, Digital Elevation/Terrain Model (DEM), Topographical Relief Maps, RADAR IMAGERY | |
| High spatial and temporal resolution multi-source anthropogenic heat estimation for China | Qian, Jiangkang, Zhang, Linlin, Schlink, Uwe, Meng, Qingyan, Liu, Xue, Jansco, Tamas | Surface Pressure, Heat Flux, Longwave Radiation, Shortwave Radiation, Air Temperature, Specific Humidity, Evapotranspiration, Wind Speed, Rain, Snow, Soil Moisture/Water Content, Soil Temperature, Land Surface Temperature, Snow Cover, Snow Depth, Snow Water Equivalent, Runoff, Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| High-resolution mapping of soil carbon stocks in the western Amazon | Moquedace, Cassio Marques, Baldi, Clara Gloria Oliveira, Siqueira, Rafael Gomes, Cardoso, Irene Maria, Souza, Emanuel Fernando Maia de, Fontes, Renildes Lucio Ferreira, Francelino, Marcio Rocha, Gomes, Lucas Carvalho, Fernandes-Filho, Elpidio Inacio | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Dominant woody plant species recognition with a hierarchical model based on multimodal geospatial data for subtropical forests | Chen, Xin, Sun, Yujun | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Framework to Create Inventory Dataset for Disaster Behavior Analysis Using Google Earth Engine: A Case Study in Peninsular Malaysia for Historical Forest Fire ... | Chew, Yee Jian, Ooi, Shih Yin, Pang, Ying Han, Lim, Zheng You | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Land Use/Land Cover Classification, Land Surface Temperature, Emissivity, Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Flood Mapping of Synthetic Aperture Radar (SAR) Imagery Based on Semi-Automatic Thresholding and Change Detection | Lang, Fengkai, Zhu, Yanyin, Zhao, Jinqi, Hu, Xinru, Shi, Hongtao, Zheng, Nanshan, Zha, Jianfeng | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Global assessment of vegetation patterns along topographic gradients | Liang, Tianchen, Tian, Feng, Zou, Linqing, Jin, Hongxiao, Tagesson, Torbern, Rumpf, Sabine, He, Tao, Liang, Shunlin, Fensholt, Rasmus | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Exploring Ecological Quality and Its Driving Factors in Diqing Prefecture, China, Based on Annual Remote Sensing Ecological Index and Multi-Source Data. | Wang, Chen, Sheng, Qianqian, Zhu, Zunling | Evapotranspiration, Photosynthesis, Primary Production, Latent Heat Flux, Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Geographical appraisal of the basin hydrological phenomenon using Google Earth Engine | Mandal, Sameer, Bhadra, Aditi, Bandyopadhyay, Arnab | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Extracting an accurate river network: Stream burning re-revisited | Chen, Qiuyang, Mudd, Simon M., Attal, Mikael, Hancock, Steven | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Evaluation of Ecological Environment Quality and Analysis of Influencing | Gan, Xintian, Du, Xiaochu, Duan, Chengjun, Peng, Linhan | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Examining the Controls on the Spatial Distribution of Landslides | Bai, Guangshun, Yang, Xuemei, Bai, Guangxin, Kong, Zhigang, Zhu, Jieyong, Zhang, Shitao | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Comparing Aggregated and Separate Models for Crowd Density Forecasting | Sardinha, Iohan, Rocha, Ana Paula, Rossetti, Rosaldo J. F. | Leaf Characteristics, Photosynthetically Active Radiation, Leaf Area Index (LAI), Fraction Of Absorbed Photosynthetically Active Radiation (fapar), Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Methods and challenges in digital soil mapping: applied modelling with R examples | Fernandes-Filho, Elpidio Inacio, Moquedace, Cassio Marques, Pereira, Luis Flavio, Veloso, Gustavo Vieira, de Carvalho Junior, Waldir | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| PatagoniaMet: A multi-source hydrometeorological dataset for Western Patagonia | Aguayo, Rodrigo, Leon-Munoz, Jorge, Aguayo, Mauricio, Baez-Villanueva, Oscar Manuel, Zambrano-Bigiarini, Mauricio, Fernandez, Alfonso, Jacques-Coper, Martin | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps, Leaf Area Index (LAI), Normalized Difference Vegetation Index (NDVI) | |
| Predicting potential fire severity in Turkiye's diverse forested areas: a SHAP-integrated random forest classification approach | Eker, Remzi, Aydn, Abdurrahim | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area, Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Multitemporal landslide inventory and susceptibility map for the Arun River Basin, Nepal | Amatya, Pukar, Emberson, Robert, Kirschbaum, Dalia | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps, Landslides | |
| Open Data-Driven 3D Building Models for Micro-Population Mapping in a | Maneepong, Kittisak, Yamanotera, Ryota, Akiyama, Yuki, Miyazaki, Hiroyuki, Miyazawa, Satoshi, Akiyama, Chiaki Mizutani | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| New top-down estimation of daily mass and number column density of black | Liu, Jian, Cohen, Jason Blake, Tiwari, Pravash, Liu, Zhewen, Yim, Steve Hung-Lam, Gupta, Pawan, Qin, Kai | Aerosol Extinction, Aerosol Optical Depth/Thickness, Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Quantifying Channel Mobility and Floodplain Reworking Timescales Across | Greenberg, Evan, Chadwick, Austin J., Li, Gen K., Ganti, Vamsi | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| Modeling groundwater levels in California's Central Valley by hierarchical Gaussian process and neural network regression | Pradhan, Anshuman, Adams, Kyra H., Chandrasekaran, Venkat, Liu, Zhen, Reager, John T., Stuart, Andrew M., Turmon, Michael J. | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps | |
| ML-CASCADE: A machine learning and cloud computing-based tool for rapid and automated mapping of landslides using earth observation data | Sharma, Nirdesh, Saharia, Manabendra | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps |