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Suomi NPP data announcement
Publications Citing ORNL DAAC Data
List of peer-reviewed publications that cite using ORNL DAAC data.
Filters
| Title | Year Sort ascending | Author | Topic | Dataset |
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| Earth observation and machine-learning-based mapping of 0-1 m soil | Xiao, Yao, Hu, Guojie, Zhao, Lin, Du, Erji, Xing, Zanpin, Li, Ren, Wu, Tonghua, Wu, Xiaodong, Liu, Guangyue, Zou, Defu, Zhao, Yonghua, Zhou, Nan, Wu, Yifan | Soil Depth, Active Layer, Soil Moisture/Water Content | ||
| Dual stage Spectral and Spatial Analyser (DSSA) - A novel deep learning model for methane detection from hyperspectral images | George, Maria, Sethunadh, R. | Reflectance, Water Vapor | ||
| Dynamic analysis of drought propagation in the context of climate change and watershed characterization: a quantitative study based on GAMLSS and Copula models | Li, Min, Feng, Zilong, Zhang, Mingfeng, Shi, Lijie, Yao, Yuhang | Leaf Area Index (LAI), Normalized Difference Vegetation Index (NDVI) | ||
| Cold-summer and summer-snowfall trends and their impacts on vegetation in a warming Mongolian Plateau | Chen, Zhang, Lv, Junchen, Jiang, Hao, Lei, Dongyang, Xue, Jianguo, Li, Ang, Huang, Jianhui | Vegetation Index, Normalized Difference Vegetation Index (NDVI) | ||
| Combining meta-analysis and machine learning to assess global greenhouse CO<SUB>2</SUB> enrichment for crop yields: Suitability and future climate resilience | Sun, Jiejie, Wang, Tongli, Black, Thomas Andrew, Zhang, Jiaen, Qian, Jing, Luo, Dawei, Ye, Zhengyang, Wang, Guiyun, Shi, Zhaoji, Xu, Wenhuan, Hu, Xiaodong, Xu, Ming | Carbon, Cation Exchange Capacity, Organic Matter | ||
| Comparative analysis of machine learning biomass models against global remote sensing products using ground validation | Paraseth, Prakash, Khanal, Arpan, Banerjee, Kakoli | Biomass, Forests, Vegetation Height, DISTURBANCE | ||
| Development of the global chemistry-climate coupled model BCC-GEOS-Chem v2. 0: improved atmospheric chemistry performance and new capability of chemistry ... | Sun, Ruize, Lu, Xiao, Lin, Haipeng, Wu, Tongwen, Ye, Xingpei, Shen, Lu, Wang, Xuan, Wang, Haolin, Li, Jingyu, Lu, Ni, Su, Jiayin, Zhang, Jie, Zhang, Fang, Xin, Xiaoge, Liu, Xiong, Yang, Xiao, Zhang, Lin | Carbonaceous Aerosols, Nitrogen Oxides, Particulates, Hydrogen Cyanide, Emissions, Non-methane Hydrocarbons/Volatile Organic Compounds, Particulate Matter, Fire Occurrence, Nitrogen Oxides, Sulfur Dioxide, Carbon And Hydrocarbon Compounds | ||
| Deep learning for groundwater level simulation in unconfined aquifers across the contiguous United States: Analyzing simulations at multiple lead times and integrating groundwater signatures | Boo, Kenneth Beng Wee, Chow, Ming Fai, Wong, Wai Peng, Ahmed, Ali Najah, El-Shafie, Ahmed | Maximum/Minimum Temperature, 24 Hour Precipitation Amount, Snow Water Equivalent, Vapor Pressure, Shortwave Radiation | ||
| Deep neural network-based approaches for aboveground biomass mapping in Indian Sundarbans | Banerjee, Sinchan, Santra, Abhisek, Bhadra, Tuhin, Mukherjee, Kasturi, Saha, Abinit, Das, Roshan, Sardar, Rupayan, Roy, Soumak, Mitra, Shreyashi S. | Forests, Biomass | ||
| Delta-X: An airborne remote sensing framework to calibrate hydrodynamic | Simard, Marc, Jones, Cathleen E., Twilley, Robert R., Castaneda-Moya, Edward, Fagherazzi, Sergio, Fichot, Cedric G., Lamb, Michael P., Passalacqua, Paola, Pavelsky, Tamlin M., Thompson, David R., Belhadj-aissa, Saoussen, Biswas, Pradipta, Christensen, Alexandra, Cortese, Luca, Denbina, Michael, Donatelli, Carmine, Flores, Sarah, Fontenot, Andy, Harringmeyer, Joshua P., Jensen, Daniel, Mallard, John, Nghiem, Justin, Oliver-Cabrera, Talib, Payandeh, Ali Reza, Rovai, Andre S., Solohin, Elena, Soloy, Antoine, Varugu, Bhuvan, Wang, Dongchen, Wright, Kyle, Zhang, Xiaohe, Zheng, Yang | Hydroperiod, Inundation, Water Channels, Surface Water Processes/Measurements, Estuary, Water Depth, Coastal Bathymetry, Wetlands, Deltas, RIVERS/STREAMS, Digital Elevation/Terrain Model (DEM), Coastal Elevation, Wetlands, Stage Height, Salt Marsh, Coastal, Biomass, Wetlands, Forests, Suspended Solids, Terrain Elevation, Primary Production, Vegetation Species, Plant Characteristics, Sedimentation, Accretion, Isotopic Age, Soil Horizons/Profile, Infrared Radiance, Sedimentation, Sediments, VIEWING GEOMETRY, Vegetation Cover, Geolocation, Visible Radiance, Sediment Transport, Sediment Transport, Attenuation/Transmission, Vegetation Fraction, Sea Level Changes, REFLECTED INFRARED, VISIBLE IMAGERY, Reflectance, Isotopes, Nutrients, Nutrient Cycling, Isotope Ratios, Sediment Transport, Sediment Transport, Nitrogen, Organic Matter, Soil Bulk Density, Carbon, Potassium, Nitrogen, Dominant Species, Discharge/Flow, Soil Rooting Depth, Salinity, Sediment Composition, Organic Matter, Solids, Surface Water Chemistry, Soil Organic Carbon (SOC), Sedimentation, Water Depth, Water Characteristics, Turbidity, Water Temperature, Chlorophyll Concentrations, Sedimentation |
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| Flocculated Silt, Not Clay, Dominates River Suspended Sediment Load | Nghiem, Justin A., Li, Gen K., ZepedaRosales, Miguel, Li, Youli, Lamb, Michael P. | Surface Water Processes/Measurements, Water Channels, Sediment Transport, Sediments, Sedimentation | ||
| Flood Hazard Assessment Under Subsidence-Influenced Terrain Using Deformation-Adjusted DEM in an Oil and Gas Field | Al Sulaimani, Mohammed, Abdalla, Rifaat, El-Diasty, Mohammed, Al Abri, Amani, El-Ghali, Mohamed A. K., Tabook, Ahmed | Runoff, Soil Texture | ||
| Flood risks to the financial stability of residential mortgage borrowers: an integrated modeling approach | Fitzmaurice, Kieran P., Garcia, Helena M., Sebastian, Antonia, Thomson, Hope, Zeff, Harrison B., Characklis, Gregory W. | Maximum/Minimum Temperature, Precipitation Amount, Snow Water Equivalent, Vapor Pressure, Shortwave Radiation | ||
| GEMS-GER: a machine learning benchmark dataset of long-term groundwater levels in Germany with meteorological forcings and site-specific environmental ... | Ohmer, Marc, Liesch, Tanja, Habbel, Bastian, Heudorfer, Benedikt, Gomez, Mariana, Clos, Patrick, Nolscher, Maximilian, Broda, Stefan | Runoff, Soil Texture | ||
| FRIDA-Clim v1. 0.1: a simple climate model with process-based carbon cycle used in the integrated assessment model FRIDAv2. 1 | Wells, Christopher D., Ramme, Lennart, Smith, Chris, Breier, Jannes, Muralidhar, Adakudlu, Li, Chao, Gjermundsen, Ada, Schoenberg, William Alexander, Blanz, Benjamin, Mauritzen, Cecilie | Forests, Plant Phenological Changes, Normalized Difference Vegetation Index (NDVI), Plant Phenology, Evergreen Vegetation, Vegetation Index | ||
| Global atmospheric hydrogen chemistry and source-sink budget equilibrium simulation with the EMAC v2. 55 model | Surawski, Nic, Steil, Benedikt, Bruhl, Christoph, Gromov, Sergey, Klingmuller, Klaus, Martin, Anna, Pozzer, Andrea, Lelieveld, Jos | Carbonaceous Aerosols, Nitrogen Oxides, Particulates, Hydrogen Cyanide, Emissions, Non-methane Hydrocarbons/Volatile Organic Compounds, Particulate Matter, Fire Occurrence, Nitrogen Oxides, Sulfur Dioxide, Carbon And Hydrocarbon Compounds | ||
| Global crop-specific energy demand for irrigation | Chiarelli, Davide Danilo, DOdorico, Paolo, Fiori, Aldo, Nanesha, Harsh, Unnikrisnan, Akhil, Lombardich, Ivan, Rulli, Maria Cristina | Carbon, Cation Exchange Capacity, Organic Matter | ||
| ForestScan: a unique multiscale dataset of tropical forest structure across 3 continents including terrestrial, UAV and airborne LiDAR and in-situ forest census data | Chavana-Bryant, Cecilia, Wilkes, Phil, Yang, Wanxin, Burt, Andrew, Vines, Peter, Bennett, Amy C., Pickavance, Georgia C., Cooper, Declan L. M., Lewis, Simon L., Phillips, Oliver L., Brede, Benjamin, Lau, Alvaro, Herold, Martin, McNicol, Iain M., Mitchard, Edward T. A., Coomes, David A., Jackson, Toby D., Makaga, Loic, Milamizokou Napo, Heddy O., Ngomanda, Alfred, Ntie, Stephan, Medjibe, Vincent, Dimbonda, Pacome, Soenens, Luna, Daelemans, Virginie, Proux, Laetitia, Nilus, Reuben, Labriere, Nicolas, Jeffery, Kathryn, Burslem, David F. R. P., Clewley, Dan, Moffat, David, Qie, Lan, Bartholomeus, Harm, Vincent, Gregoire, Barbier, Nicolas, Derroire, Geraldine, Abernethy, Katharine, Scipal, Klaus, Disney, Mathias | Carbon, Forests, Biomass | ||
| Evolving global oceanic nitrogen deposition under future emission pathways and responses to nitrogen emission reductions | Deng, Jialin, Guo, Yixin, Lu, Ni, Ye, Xingpei, Zhao, Yuanhong, Xu, Jiayu, Liu, Lei, Zhang, Lin | Carbonaceous Aerosols, Nitrogen Oxides, Particulates, Hydrogen Cyanide, Emissions, Non-methane Hydrocarbons/Volatile Organic Compounds, Particulate Matter, Fire Occurrence, Nitrogen Oxides, Sulfur Dioxide, Carbon And Hydrocarbon Compounds | ||
| Forest aboveground biomass in the southwestern US from MISR and GEDI: | Chopping, Mark J., Wang, Zhuosen, Schaaf, Crystal B., Bull, Michael | Terrestrial Ecosystems, LIDAR WAVEFORM, Biomass, Canopy Characteristics, Vegetation Cover, Droughts, Land Use/Land Cover, Litter Characteristics, Forests, Carbon |
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| Forest bird diversity increases with fragmentation per se in landscapes following forest gains | Martin, Amanda E., Riva, Federico, GalanAcedo, Carmen, Fahrig, Lenore | Carbon, Forest Composition/Vegetation Structure | ||
| Fire severity and carbon combustion from tussock tundra fires in Southwest Alaska | Diaz, Lucas R, Saperstein, Lisa B, van Gerrevink, Max J, Wangchuk, Sonam, Hessilt, Thomas D, Janssen, Thomas A J, Scholten, Rebecca C, Delcourt, Clement J F, Veraverbeke, Sander | Vegetation Cover, Forests, Biomass Burning, Surface Temperature, Precipitation Amount, Fire Dynamics, Fire Occurrence, Carbon, Burned Area, Biomass, Soil Moisture/Water Content, Topographic Effects | ||
| Family imprint reveals basin-wide patterns of Amazon forest embolism resistance | Tavares, Julia Valentim, Gloor, Emanuel, Silva, Thiago S. F., Oliveira, Rafael S., Coelho de Souza, Fernanda, Signori-Muller, Caroline, Diniz, Francisco Carvalho, Pereira, Luciano, Acosta, Martin, Gilpin, Martin, Marca Zevallos, Manuel J., Salas Yupayccana, Carlos A., Perez-Mullisaca, Flor M., Jancoski, Halina, Scalon, Marina Correa, Schwantes Marimon, Beatriz, Marimon Junior, Ben Hur, Malhi, Yadvinder, Oliveras Menor, Imma, Rowland, Lucy, Meir, Patrick, Bittencourt, Paulo, Carlos Lola da Costa, Antonio, Santos, Joao Antonio R., Teixeira de Oliveira, Renata, Esquivel-Muelbert, Adriane, Alvarez-Davila, Esteban, Alexiades, Miguel N., de Oliveira, Edmar Almeida, Andrade, Ana, Aragao, Luiz, Araujo-Murakami, Alejandro, Arroyo, Luzmila, Aymard, Gerardo, Barroso, Jorcely G., Bonal, Damien, Brienen, Roel, Ceron, Carlos, Camargo, Jose Luis, Silva, Richarlly, Castro, Wendeson, Chave, Jerome, Comiskey, James, Daly, Douglas C., Derroire, Geraldine, Disney, Mathias, Dourdain, Aurelie, Fauset, Sophie, Feldpausch, Ted, Flores Llampazo, Gerardo, Herault, Bruno, Hernandez, Lionel, Higuchi, Niro, Honorio Coronado, Euridice N., Jimenez-Rojas, Eliana, Kalamandeen, Michelle, Laurance, Susan, Laurance, William, Lewis, Simon, Lima, Antonio S., Monteagudo-Mendoza, Abel, Morandi, Paulo, NunezVargas, Percy, Neill, David, Palacios, Walter, Parada Gutierrez, Alexander, Pardo-Molina, Guido, Penuela-Mora, Maria Cristina, Pitman, Nigel, Rojas, Rocio, Prieto, Adriana, Rejou-Mechain, Maxime, Ramirez-Angulo, Hirma, Cerruto Ribeiro, Sabina, Ruokolainen, Kalle, Salomao, Rafael P., Serrano, Julio, Sierra, Rodrigo, Ruschel, Ademir R., Silveira, Marcos, ter Steege, Hans, Terborgh, John, Valenzuela Gamarra, Luis, Vasquez Martinez, Rodolfo, Vieira, Ima, Vilanova Torre, Emilio, Vos, Vincent A., Wang, Ophelia, Young, Kenneth, Muscarella, Robert, Dexter, Kyle G., Baker, Timothy R., Phillips, Oliver L., Mencuccini, Maurizio, Galbraith, David | Wetlands, Land Use/Land Cover Classification, Inundation | ||
| Global perspectives on nitrate aerosol dynamics: a comprehensive sensitivity analysis | Milousis, Alexandros, Scholz, Susanne M. C., Fuchs, Hendrik, Tsimpidi, Alexandra P., Karydis, Vlassis A. | Carbonaceous Aerosols, Nitrogen Oxides, Particulates, Hydrogen Cyanide, Emissions, Non-methane Hydrocarbons/Volatile Organic Compounds, Particulate Matter, Fire Occurrence, Nitrogen Oxides, Sulfur Dioxide, Carbon And Hydrocarbon Compounds | ||
| Identifying and quantifying greenhouse gas emissions with the AVIRIS-3 | Coleman, Red Willow, Thorpe, Andrew K., Brodrick, Philip G., Chlus, Adam, Fahlen, Jay E., Bue, Brian, Chapman, John, Eckert, Regina F., Jensen, Daniel J., Eastwood, Michael L., Thompson, David R., Elder, Clayton D., Beltran, Sergio Gomez, Amezquita, Diana Rodriguez, Hopkins, Francesca, Green, Robert O. | Carbon And Hydrocarbon Compounds, Methane, Industrial Emissions, Visible Radiance, Infrared Radiance |