N: 86 S: -86 E: 180 W: -180
Description
GLAH06 is used in conjunction with GLAH05 to create the Level-2 altimetry products. Level-2 altimetry data provide surface elevations for ice sheets (GLAH12), sea ice (GLAH13), land (GLAH14), and oceans (GLAH15). Data also include the laser footprint geolocation and reflectance, as well as geodetic, instrument, and atmospheric corrections for range measurements. The Level-2 elevation products, are regional products archived at 14 orbits per granule, starting and stopping at the same demarcation (± 50° latitude) as GLAH05 and GLAH06. Each regional product is processed with algorithms specific to that surface type. Surface type masks define which data are written to each of the products. If any data within a given record fall within a specific mask, the entire record is written to the product. Masks can overlap: for example, non-land data in the sea ice region may be written to the sea ice and ocean products. This means that an algorithm may write the same data to more than one Level-2 product. In this case, different algorithms calculate the elevations in their respective products. The surface type masks are versioned and archived at NSIDC, so users can tell which data to expect in each product. Each data granule has an associated browse product.
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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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Documents
DATA PRODUCT SPECIFICATION
GENERAL DOCUMENTATION
| Title | Year Sort ascending | Author | Topic |
|---|---|---|---|
| Accelerating High Mountain Asia Glacier Loss From ICESat and ICESat-2 | Hassan, Javed, Colgan, William, Nielsen, Karina, Bhakta Kayastha, Rijan, Khadka, Mira, Abbas Khan, Shfaqat | Digital Elevation/Terrain Model (DEM), Glacier Elevation/Ice Sheet Elevation, Glacier Topography/Ice Sheet Topography, Ice Roughness, Ice Sheets, Reflectance, Sea Surface Height, Sea Surface Slope, Surface Roughness, Terrain Elevation | |
| Monitoring Flood Inundation Dynamics From Space | Campo, C., Tamagnone, P., Choy, S., Tran, T. D., Schumann, G. J.P., Kuleshov, Y. | Atmospheric Water Vapor, Precipitation, Brightness Temperature, Reflectance, Reflectance, Terrain Elevation | |
| Extreme Lake Level Rise in the Zaysan Basin Driven by Intense Snowmelt Runoff | Xue, Yu, Wang, Qiuyu, Zhang, Huake, Xu, Huan, Sun, Wenke | Reflectance, Terrain Elevation | |
| Retrieval of Snow Grain Size over the Tibetan Plateau: Preliminary | Zhang, Yunlong, Tian, Yixiang | Reflectance, Reflectance, Terrain Elevation | |
| Estimating Seasonal and Interannual Variability in Glaciers of The High Mountains Asia Surrounding the Tarim Basin | Xu, Xiaoqian, Wang, Wen | Reflectance, Terrain Elevation | |
| Satellite observed recent rising water levels of global lakes and reservoirs | Xu, Nan, Ma, Yue, Wei, Zhongwang, Huang, Conghong, Li, Guoyuan, Zheng, Huiying, Wang, Xiao Hua | Reflectance, Terrain Elevation | |
| Rapid glacier mass loss in the Southeastern Tibetan Plateau since the year 2000 from satellite observations | Zhao, Fanyu, Long, Di, Li, Xingdong, Huang, Qi, Han, Pengfei | Terrain Elevation, RADAR IMAGERY, Topographical Relief Maps, REFLECTED INFRARED, THERMAL INFRARED, VISIBLE IMAGERY, Reflectance | |
| The spatio-temporal reconstruction of lake water levels using deep learning models: A case study on Altai mountains | Yue, Linwei, Zan, Fangqing, Liu, Xiuguo, Yuan, Qiangqiang, Shen, Huanfeng | Reflectance, Terrain Elevation | |
| Leaf surface water, not plant water stress, drives diurnal variation in tropical forest canopy water content | Xu, Xiangtao, Konings, Alexandra G., Longo, Marcos, Feldman, Andrew, Xu, Liang, Saatchi, Sassan, Wu, Donghai, Wu, Jin, Moorcroft, Paul | Reflectance, Terrain Elevation | |
| Inversion of Terrain Slope and Roughness with Satellite Laser Altimeter | Zuo, Zhiqiang, Tang, Xinming, Li, Guoyuan, Ma, Yue, Zhang, Wenhao, Li, Song | RADAR IMAGERY, Terrain Elevation, Topographical Relief Maps, Digital Elevation/Terrain Model (DEM), Reflectance, Infrared Wavelengths, Glacier Elevation/Ice Sheet Elevation, Glacier Topography/Ice Sheet Topography, Ice Sheets | |
| Grounding Line Retreat of Denman Glacier, East Antarctica, Measured With COSMO-SkyMed Radar Interferometry Data | Brancato, V., Rignot, E., Milillo, P., Morlighem, M., Mouginot, J., An, L., Scheuchl, B., Jeong, S., Rizzoli, P., Bueso Bello, J. L., PratsIraola, P. | Reflectance, Terrain Elevation, Lidar | |
| Interannual Variability of Carbon Uptake of Secondary Forests in the Brazilian Amazon (2004-2014) | Yang, Yan, Saatchi, Sassan, Xu, Liang, Keller, Michael, Corsini, Christianne R., Aragao, Luiz E. O. C., Aguiar, Ana P., Knyazikhin, Yuri, Myneni, Ranga B. | Reflectance, Terrain Elevation | |
| Intra-and inter-annual variability in dynamic discharge from the Academy of Sciences Ice Cap, Severnaya Zemlya, Russian Arctic, and its role in modulating mass ... | Sanchez-Gamez, Pablo, Navarro, Francisco J., Benham, Toby J., Glazovsky, Andrey F., Bassford, Robin P., Dowdeswell, Julian A. | Reflectance, Terrain Elevation | |
| Water Storage Variations in Tibet from GRACE, ICESat, and Hydrological Data | Zou, Fang, Tenzer, Robert, Jin, Shuanggen | Reflectance, Terrain Elevation | |
| Post-drought decline of the Amazon carbon sink | Yang, Yan, Saatchi, Sassan S., Xu, Liang, Yu, Yifan, Choi, Sungho, Phillips, Nathan, Kennedy, Robert, Keller, Michael, Knyazikhin, Yuri, Myneni, Ranga B. | Total Surface Precipitation Rate, Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area, Reflectance, Terrain Elevation |