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Publications Citing Land Surface Data
List of peer-reviewed publications that cite using Land Surface data.
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| Title | Year Sort ascending | Author | Topic | Dataset |
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| Impact of warming shelf waters on ice melange and terminus retreat at a large SE Greenland glacier | Bevan, Suzanne L., Luckman, Adrian J., Benn, Douglas I., Cowton, Tom, Todd, Joe | Bathymetry, Bed Elevation, Glacier/Ice Sheet Thickness, Terrain Elevation | ||
| Consistency Between NASS Surveyed Soil Moisture Conditions and SMAP Soil Moisture Observations | Colliander, Andreas, Yang, Zhengwei, Mueller, Rick, Sandborn, Avery, Reichle, Rolf, Crow, Wade, Entekhabi, Dara, Yueh, Simon | Surface Soil Moisture | ||
| Canopy and Terrain Height Retrievals with ICESat-2: A First Look | Neuenschwander, Amy L., Magruder, Lori A. | Terrain Elevation, Vegetation Height | ||
| Downscaling SMAP soil moisture estimation with gradient boosting decision tree regression over the Tibetan Plateau | Wei, Zushuai, Meng, Yizhuo, Zhang, Wen, Peng, Jian, Meng, Lingkui | Soil Moisture/Water Content | ||
| Estimating irrigation water use over the contiguous United States by combining satellite and reanalysis soil moisture data | Zaussinger, Felix, Dorigo, Wouter, Gruber, Alexander, Tarpanelli, Angelica, Filippucci, Paolo, Brocca, Luca | Brightness Temperature, Soil Moisture/Water Content | ||
| Evaluation of two SMAP soil moisture retrievals using modeled-and ground-based measurements | Bai, Li, Lv, Xin, Li, Xiaojun | Brightness Temperature, Soil Moisture/Water Content | ||
| Ground elevation accuracy verification of ICESat-2 data: A case study in Alaska, USA | Wang, Cheng, Zhu, Xiaoxiao, Nie, Sheng, Xi, Xiaohuan, Li, Dong, Zheng, Wenwu, Chen, Shichao | Terrain Elevation | ||
| Evolution of the ESA CCI Soil Moisture climate data records and their underlying merging methodology | Gruber, Alexander, Scanlon, Tracy, van der Schalie, Robin, Wagner, Wolfgang, Dorigo, Wouter | Brightness Temperature, Soil Moisture/Water Content | ||
| Examining the impact of SMAP soil moisture retrievals on short-range weather prediction under weakly and strongly coupled data assimilation with WRF ... | Lin, Liao-Fan, Pu, Zhaoxia | Brightness Temperature, Soil Moisture/Water Content | ||
| Ice-cliff failure via retrogressive slumping | Parizek, Byron R., Christianson, Knut, Alley, Richard B., Voytenko, Denis, Vankova, Irena, Dixon, Timothy H., Walker, Ryan T., Holland, David M. | Bathymetry, Bed Elevation, Glacier/Ice Sheet Thickness, Terrain Elevation | ||
| How can Big Data and machine learning benefit environment and water management: a survey of methods, applications, and future directions | Sun, Alexander Y, Scanlon, Bridget R | Surface Soil Moisture | ||
| Diagnosing Bias in Modeled Soil Moisture/Runoff Coefficient Correlation | Crow, W. T., Chen, F., Reichle, R. H., Xia, Y. | Root Zone Soil Moisture, Surface Soil Moisture | ||
| Multi-objective calibration of MIKE SHE with SMAP soil moisture datasets | Li, Dayang, Liang, Zhongmin, Li, Binquan, Lei, Xiaohui, Zhou, Yan | Root Zone Soil Moisture, Surface Soil Moisture | ||
| A comprehensive scheme for lithological mapping using Sentinel-2A and ASTER GDEM in weathered and vegetated coastal zone, Southern China | Lin, Jingyu, Wang, Ran, Zhao, Bo, Cheng, Sanyou | Terrain Elevation, Digital Elevation/Terrain Model (DEM), Topographical Relief Maps | ||
| A comprehensive validation of the SMAP Enhanced Level-3 Soil Moisture product using ground measurements over varied climates and landscapes | Zhang, Runze, Kim, Seokhyeon, Sharma, Ashish | Longwave Radiation, Shortwave Radiation, Soil Heat Budget, Soil Heat Budget, Soil Temperature, Soil Temperature, Soil Infiltration, Soil Infiltration, Soil Moisture/Water Content, Surface Soil Moisture, Root Zone Soil Moisture, Soil Moisture/Water Content, Evaporation, Surface Water, Runoff Rate, Average Flow, Average Flow, Precipitation, Snow/Ice, Snow Depth, Snow Melt, Snow/Ice Temperature, Leaf Area Index (LAI), Leaf Area Index (LAI), Land Use/Land Cover Classification | ||
| A concept of satellite-based IoT for downscaling the MODIS data to extract Land Surface Temperature | Agarwal, Ankush, Gupta, Shruti, Kumar, Sandeep, Singh, Dharmendra | Land Surface Temperature, Emissivity |
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| A contextual and multitemporal active-fire detection algorithm based on FengYun-2G S-VISSR data | Lin, Zhengyang, Chen, Fang, Li, Bin, Yu, Bo, Jia, Huicong, Zhang, Meimei, Liang, Dong | Fire Occurrence, Surface Thermal Properties, Land Surface Temperature, THERMAL ANOMALIES |
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| A contour-directional detection for deriving Terrace Ridge from open source images and digital elevation models | Dai, Wen, Hu, Guanghui, Huang, Nan, Zhang, Peng, Yang, Xin, Tang, Guoan | Terrain Elevation, Digital Elevation/Terrain Model (DEM), Topographical Relief Maps | ||
| Rubber identification based on blended high spatio-temporal resolution optical remote sensing dataA case study in Xishuangbanna | Gao, Shupeng, Liu, Xiaolong, Bo, Yanchen, Shi, Zhengtao, Zhou, Hongmin | Reflectance | ||
| Runoff from glacier ice and seasonal snow in High Asia: separating melt water sources in river flow | Armstrong, Richard L., Rittger, Karl, Brodzik, Mary J., Racoviteanu, Adina, Barrett, Andrew P., Khalsa, Siri-Jodha Singh, Raup, Bruce, Hill, Alice F., Khan, Alia L., Wilson, Alana M., Kayastha, Rijan Bhakta, Fetterer, Florence, Armstrong, Betsy | Terrain Elevation, Digital Elevation/Terrain Model (DEM), Topographical Relief Maps, RADAR IMAGERY, Evapotranspiration, Latent Heat Flux | ||
| Satellite data-driven modeling of field scale evapotranspiration in croplands using the MOD16 algorithm framework | He, Mingzhu, Kimball, John S., Yi, Yonghong, Running, Steven W., Guan, Kaiyu, Moreno, Alvaro, Wu, Xiaocui, Maneta, Marco | Land Use/Land Cover Classification, Reflectance, Albedo, Anisotropy |
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| The development of digital models of the soil cover in the western part of Bolshezemelskaya tundra | Vekshina, V. N. | Terrain Elevation, Digital Elevation/Terrain Model (DEM), Topographical Relief Maps | ||
| The DOE E3SM Coupled Model Version 1: Description and Results at High | Caldwell, Peter M., Mametjanov, Azamat, Tang, Qi, Van Roekel, Luke P., Golaz, JeanChristophe, Lin, Wuyin, Bader, David C., Keen, Noel D., Feng, Yan, Jacob, Robert, Maltrud, Mathew E., Roberts, Andrew F., Taylor, Mark A., Veneziani, Milena, Wang, Hailong, Wolfe, Jonathan D., Balaguru, Karthik, CameronSmith, Philip, Dong, Lu, Klein, Stephen A., Leung, L. Ruby, Li, HongYi, Li, Qing, Liu, Xiaohong, Neale, Richard B., Pinheiro, Marielle, Qian, Yun, Ullrich, Paul A., Xie, Shaocheng, Yang, Yang, Zhang, Yuying, Zhang, Kai, Zhou, Tian | Forests, Primary Production, Biogeochemical Cycles, Topographic Effects | ||
| The DOE E3SM Coupled Model Version 1: Overview and Evaluation at Standard Resolution | Golaz, JeanChristophe, Caldwell, Peter M., Van Roekel, Luke P., Petersen, Mark R., Tang, Qi, Wolfe, Jonathan D., Abeshu, Guta, Anantharaj, Valentine, AsayDavis, Xylar S., Bader, David C., Baldwin, Sterling A., Bisht, Gautam, Bogenschutz, Peter A., Branstetter, Marcia, Brunke, Michael A., Brus, Steven R., Burrows, Susannah M., CameronSmith, Philip J., Donahue, Aaron S., Deakin, Michael, Easter, Richard C., Evans, Katherine J., Feng, Yan, Flanner, Mark, Foucar, James G., Fyke, Jeremy G., Griffin, Brian M., Hannay, Cecile, Harrop, Bryce E., Hoffman, Mattthew J., Hunke, Elizabeth C., Jacob, Robert L., Jacobsen, Douglas W., Jeffery, Nicole, Jones, Philip W., Keen, Noel D., Klein, Stephen A., Larson, Vincent E., Leung, L. Ruby, Li, HongYi, Lin, Wuyin, Lipscomb, William H., Ma, PoLun, Mahajan, Salil, Maltrud, Mathew E., Mametjanov, Azamat, McClean, Julie L., McCoy, Renata B., Neale, Richard B., Price, Stephen F., Qian, Yun, Rasch, Philip J., Reeves Eyre, J. E. Jack, Riley, William J., Ringler, Todd D., Roberts, Andrew F., Roesler, Erika L., Salinger, Andrew G., Shaheen, Zeshawn, Shi, Xiaoying, Singh, Balwinder, Tang, Jinyun, Taylor, Mark A., Thornton, Peter E., Turner, Adrian K., Veneziani, Milena, Wan, Hui, Wang, Hailong, Wang, Shanlin, Williams, Dean N., Wolfram, Phillip J., Worley, Patrick H., Xie, Shaocheng, Yang, Yang, Yoon, JinHo, Zelinka, Mark D., Zender, Charles S., Zeng, Xubin, Zhang, Chengzhu, Zhang, Kai, Zhang, Yuying, Zheng, Xue, Zhou, Tian, Zhu, Qing | Forests, Primary Production, Biogeochemical Cycles, Topographic Effects, Sea Ice Concentration | ||
| Temporal-spatial evolution of the urban ecological footprint based on net primary productivityA case study of Xuzhou central area, China | Lu, Yao, Li, Xiaoshun, Ni, Heng, Chen, Xin, Xia, Chuyu, Jiang, Dongmei, Fan, Huiping | Land Use/Land Cover Classification |