Delivery of Suomi National Polar-orbiting Partnership (Suomi NPP) satellite data products will cease on November 1, 2026. Data users should transition now to alternative products from NOAA-21 and NOAA-20.
Suomi NPP data announcement
Publications Citing Atmosphere Data
List of peer-reviewed publications that cite using Atmosphere data.
Filters
| Title | Year Sort ascending | Author | Topic | Dataset |
|---|---|---|---|---|
| Rainfall in the Greater and Lesser Antilles: Performance of five gridded datasets on a daily timescale | Bathelemy, Ralph, Brigode, Pierre, Boisson, Dominique, Tric, Emmanuel | Total Surface Precipitation Rate | ||
| Plant Ontogeny Strongly Influences SO2 Stress Resistance in Landscape Tree Species Leaf Functional Traits | Han, Aru, Bao, Yongbin, Liu, Xingpeng, Tong, Zhijun, Qing, Song, Bao, Yuhai, Zhang, Jiquan | Aerosols, Aerosol Extinction, Aerosol Optical Depth/Thickness, Angstrom Exponent, Aerosol Particle Properties, Carbonaceous Aerosols, Dust/Ash/Smoke, Organic Particles, Sulfate Particles, Sulfur Oxides, Sulfur Compounds, Sulfate, Sulfur Dioxide, Sulfur Oxides, Particulate Matter, Dimethyl Sulfide, Black Carbon, Sea Salt, PARTICULATE MATTER (PM 2.5), PARTICULATE MATTER (PM 10), PARTICULATE MATTER (PM 1.0) | ||
| PM2. 5 Air Pollution Prediction through Deep Learning Using Multisource Meteorological, Wildfire, and Heat Data | Muthukumar, Pratyush, Nagrecha, Kabir, Comer, Dawn, Calvert, Chisato Fukuda, Amini, Navid, Holm, Jeanne, Pourhomayoun, Mohammad | Heat Flux, Air Temperature, Skin Temperature, Specific Humidity, Water Vapor, Precipitation Rate, Snow/Ice, Evaporation, Latent Heat Flux, Latent Heat Flux, Sensible Heat Flux, Diffusion, Surface Winds, Wind Speed, U/V Wind Components, Wind Stress, Wind Stress, Surface Roughness, Planetary Boundary Layer Height, Ice Fraction | ||
| Potential for Irrigated Agriculture: Groundwater | Awange, Joseph | Total Surface Precipitation Rate | ||
| Potential of Mapping Global Soil from SMAP Soil Moisture Product: A Pilot Study | Zhao, Long, Yang, Kun, He, Jie, Zheng, Hui, Zheng, Donghai | Surface Pressure, Heat Flux, Longwave Radiation, Shortwave Radiation, Surface Temperature, Humidity, Evapotranspiration, Surface Winds, Rain, Precipitation Rate, Snow, Soil Moisture/Water Content, Soil Temperature, Land Surface Temperature, Snow Water Equivalent, Runoff | ||
| Potential of satellite-derived hydro-meteorological information for landslide initiation thresholds in Rwanda | Uwihirwe, Judith, Riveros, Alessia, Wanjala, Hellen, Schellekens, Jaap, Sperna Weiland, Frederiek, Hrachowitz, Markus, Bogaard, Thom A. | Total Surface Precipitation Rate | ||
| Potential of the coupled WRF/WRF-hydro modeling system for flood forecasting in the Oueme River (West Africa) | Quenum, Gandome Mayeul Leger Davy, Arnault, Joel, Klutse, Nana Ama Browne, Zhang, Zhenyu, Kunstmann, Harald, Oguntunde, Philip G. | Total Surface Precipitation Rate | ||
| Pre-seismic temporal integrated anomalies from multiparametric remote sensing data | Jiao, Zhonghu, Shan, Xinjian | Tropopause, Surface Pressure, Air Temperature, Upper Air Temperature, Total Precipitable Water, Water Vapor, Cloud Height, Cloud Top Pressure, Cloud Top Temperature, Cloud Vertical Distribution, Emissivity, Sea Surface Temperature, Skin Temperature, Carbon Monoxide, Geopotential Height, Humidity, Water Vapor Profiles, Cloud Liquid Water/Ice, Outgoing Longwave Radiation, Methane, Atmospheric Ozone | ||
| Precipitation and Soil Moisture Spatio-Temporal Variability and Extremes over Vietnam (19812019): Understanding Their Links to Rice Yield | Bui, Luyen K., Awange, Joseph, Vu, Dinh Toan | Total Surface Precipitation Rate | ||
| Precipitation Characteristics of Cyclonic Disturbances over the South Asia Region as Revealed by TRMM and GPM | Roy, Partha, Rao, T. Narayana | Rain, Droplet Size, Precipitation Rate, Radar Reflectivity | ||
| Precipitation in northern Amazonia: spatial distribution in Roraima, Brazil | Barni, Paulo Eduardo, Barbosa, Reinaldo Imbrozio, Xaud, Haron Abrahim Magalhaes, Xaud, Maristela Ramalho, Fearnside, Philip Martin | Total Surface Precipitation Rate | ||
| Precipitation Microphysics during the Extreme Meiyu Period in 2020 | Zhang, Aoqi, Chen, Yilun, Zhou, Shengnan, Chen, Shumin, Li, Weibiao | Atmospheric Water Vapor, Precipitation, RADAR | ||
| Precipitation microphysics of tropical cyclones over Northeast China in 2020 | Zhang, Aoqi, Chen, Yilun, Pan, Xiao, Hu, Yuanyuan, Chen, Shumin, Li, Weibiao | Atmospheric Water Vapor, Precipitation, RADAR | ||
| Precipitation Trends Analysis Using Gridded Dynamic Sampling Zones: Case Study Yangtze Delta Megalopolis | Liu, Xiaolong, Fu, Dafang, Zevenbergen, Chris, Yu, Meixiu, Kumar, Alagarasan Jagadeesh | Total Surface Precipitation Rate | ||
| Precipitation-Use efficiency and its conversion with climate types in mainland china | Wang, Suping, Zhang, Qiang, Yue, Ping, Wang, Jianshun, Yang, Jinhu, Wang, Wei, Zhang, Hongli, Ren, Xueyuan | Surface Pressure, Heat Flux, Longwave Radiation, Shortwave Radiation, Surface Temperature, Humidity, Evapotranspiration, Surface Winds, Rain, Precipitation Rate, Snow, Soil Moisture/Water Content, Soil Temperature, Land Surface Temperature, Snow Water Equivalent, Runoff | ||
| Prediction of Sediment Yield in a Data-Scarce River Catchment at the Sub-Basin Scale Using Gridded Precipitation Datasets | Ijaz, Muhammad Asfand, Ashraf, Muhammad, Hamid, Shanawar, Niaz, Yasir, Waqas, Muhammad Mohsin, Tariq, Muhammad Atiq Ur Rehman, Saifullah, Muhammad, Bhatti, Muhammad Tousif, Tahir, Adnan Ahmad, Ikram, Kamran, Shafeeque, Muhammad, Ng, Anne W. M. | Total Surface Precipitation Rate | ||
| Prediction of the Central Indian Ocean Mode in S2S Models | Qin, Jianhuang, Zhou, Lei, Li, Baosheng, Meng, Ze | Total Surface Precipitation Rate | ||
| Relationship between net primary productivity and soil water content in the Shule River Basin | Yue, Dongxia, Zhou, Yanyan, Guo, Jianjun, Chao, Zengzu, Guo, Xiaojuan | Surface Pressure, Heat Flux, Longwave Radiation, Shortwave Radiation, Surface Temperature, Humidity, Evapotranspiration, Surface Winds, Rain, Precipitation Rate, Snow, Soil Moisture/Water Content, Soil Temperature, Land Surface Temperature, Snow Water Equivalent, Runoff | ||
| Relationship between Size and Intensity in North Atlantic Tropical Cyclones with Steady Radii of Maximum Wind | Ruan, Zhenxin, Wu, Qiaoyan | Precipitation, Brightness Temperature | ||
| Relationships between intense convection, lightning, and rainfall over the interior Congo Basin using TRMM data | Solimine, Stephen L., Zhou, Liming, Raghavendra, Ajay, Cai, Yichen | Lightning, Lightning | ||
| Reliability of satellite-derived precipitation data in driving hydrological simulations: A case study of the upper Huaihe River basin, China | Chen, Fengrui, Kong, Xiangbin, Li, Xi, Wang, Yiguo, Pang, Chenkun | Total Surface Precipitation Rate | ||
| Reliability of the IMERG product through reference rain gauges in Central Italy | Gentilucci, Matteo, Barbieri, Maurizio, Pambianchi, Gilberto | Total Surface Precipitation Rate | ||
| Reliably mapping low-intensity forest disturbance using satellite radar data | Aquino, Chiara, Mitchard, Edward T. A., McNicol, Iain M., Carstairs, Harry, Burt, Andrew, Puma Vilca, Beisit Luz, Obiang Ebanega, Medard, Modinga Dikongo, Anaick, Dassi, Creck, Mayta, Sylvia, Tamayo, Mario, Grijalba, Pedro, Miranda, Fernando, Disney, Mathias | Total Surface Precipitation Rate | ||
| Natural driving mechanism and trade-off and synergy analysis of the spatiotemporal dynamics of multiple typical ecosystem services in Northeast Qinghai-Tibet ... | Li, Guangyong, Jiang, Cuihong, Gao, Yu, Du, Juan | Total Surface Precipitation Rate | ||
| Nearshore bathymetry and seafloor property studies from Space lidars: | Lu, Xiaomei, Hu, Yongxiang, Omar, Ali, Yang, Yuekui, Vaughan, Mark, Rodier, Sharon, Garnier, Anne, Ryan, Robert, Getzewich, Brian, Trepte, Charles | Surface Temperature, Skin Temperature, Upper Air Temperature, Air Temperature, Atmospheric Winds, Surface Winds, U/V Wind Components, Atmospheric Pressure, Sea Level Pressure, Surface Pressure, Specific Humidity, Total Precipitable Water, Cloud Liquid Water/Ice, Atmospheric Water Vapor, Atmospheric Ozone, Oxygen Compounds, Altitude, Boundary Layer Winds |