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Publications Citing Atmospheric Rivers Data

List of peer-reviewed publications that cite using Atmospheric Rivers data.
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Detecting and predicting spatial and interannual patterns of temperate forest springtime phenology in the eastern U.S. Solar Irradiance, Solar Radiation, Maximum/Minimum Temperature, Humidity, Water Vapor, Precipitation Amount
Eddy covariance flux corrections and uncertainties in long-term studies of carbon and energy exchanges Radiative Flux, Air Temperature, Water Vapor, Carbon, Surface Winds, Photosynthetically Active Radiation, Soil Temperature, Heat Flux
Environmental controls over carbon dioxide and water vapor exchange of terrestrial vegetation Radiative Flux, Air Temperature, Water Vapor, Carbon, Surface Winds, Photosynthetically Active Radiation, Soil Temperature, Heat Flux
Energy balance closure at FLUXNET sites Radiative Flux, Air Temperature, Water Vapor, Carbon, Surface Winds, Photosynthetically Active Radiation, Soil Temperature, Heat Flux
Minimizing artifacts and biases in chamber-based measurements of soil respiration Radiative Flux, Air Temperature, Water Vapor, Carbon, Surface Winds, Photosynthetically Active Radiation, Soil Temperature, Heat Flux
Measuring nighttime CO <SUB>2</SUB> flux over terrestrial ecosystems using eddy covariance and nocturnal boundary layer methods Radiative Flux, Air Temperature, Water Vapor, Carbon, Surface Winds, Photosynthetically Active Radiation, Soil Temperature, Heat Flux
Methane efflux from boreal wetlands: Theory and testing of the ecosystem model Ecosys with chamber and tower flux measurements Precipitation Rate, Photosynthetically Active Radiation, Surface Winds, Water Vapor, Air Temperature, Net Radiation, Heat Flux, Atmospheric Carbon Dioxide, Soil Temperature, Soil Gas/Air
Interpreting Woody Plant Richness from Seasonal Ratios of Photosynthesis Soil Temperature, Solar Radiation, Air Temperature, Water Vapor, Precipitation Amount, Soil Temperature
Phase and amplitude of ecosystem carbon release and uptake potentials as derived from FLUXNET measurements Radiative Flux, Air Temperature, Water Vapor, Carbon, Surface Winds, Photosynthetically Active Radiation, Soil Temperature, Heat Flux
Modeling and measuring the effects of disturbance history and climate on carbon and water budgets in evergreen needleleaf forests Radiative Flux, Air Temperature, Water Vapor, Carbon, Surface Winds, Photosynthetically Active Radiation, Soil Temperature, Heat Flux
Modeling and Spatially Distributing Forest Net Primary Production at the Regional Scale Solar Irradiance, Solar Radiation, Maximum/Minimum Temperature, Humidity, Water Vapor, Precipitation Amount
Modelling Carbon Dynamics of Boreal Forest Ecosystems Using the Canadian Land Surface Scheme Precipitation Rate, Photosynthetically Active Radiation, Surface Winds, Water Vapor, Air Temperature, Net Radiation, Heat Flux, Atmospheric Carbon Dioxide, Soil Temperature, Precipitation Amount, Humidity, Surface Temperature, Shortwave Radiation, Longwave Radiation, Surface Pressure, Plant Characteristics, Soil Moisture/Water Content
Boreal forest CO<SUB>2</SUB> exchange and evapotranspiration predicted by nine ecosystem process models: Intermodel comparisons and relationships to field measurements Precipitation Rate, Photosynthetically Active Radiation, Surface Winds, Water Vapor, Air Temperature, Net Radiation, Heat Flux, Atmospheric Carbon Dioxide, Soil Temperature, Precipitation Amount, Humidity, Surface Temperature, Solar Radiation, Incoming Solar Radiation, Surface Pressure, Land Surface Temperature, Snow Depth, Forests
Comparison of boreal ecosystem model sensitivity to variability in climate and forest site parameters Precipitation Rate, Photosynthetically Active Radiation, Surface Winds, Water Vapor, Air Temperature, Net Radiation, Heat Flux, Atmospheric Carbon Dioxide, Soil Temperature, Forests
Modeling spatially distributed ecosystem flux of boreal forest using hyperspectral indices from AVIRIS imagery Surface Winds, Photosynthetically Active Radiation, Humidity, Air Temperature, Net Radiation, Heat Flux, Atmospheric Ozone, Atmospheric Carbon Dioxide, Soil Heat Budget, Soil Temperature, Precipitation Amount, Water Vapor, Solar Irradiance, Reflectance, Virtual Temperature, Surface Temperature, Atmospheric Stability, Shortwave Radiation, Surface Pressure, Methane, Water Depth, Canopy Characteristics, Plant Characteristics, Nitrogen Dioxide
The UCD Advanced Canopy-Atmosphere-Soil Algorithm: Comparisons with observations from different climate and vegetation regimes Surface Winds, Photosynthetically Active Radiation, Humidity, Air Temperature, Net Radiation, Heat Flux, Atmospheric Ozone, Atmospheric Carbon Dioxide, Soil Heat Budget, Soil Temperature, Surface Temperature, Solar Irradiance, Shortwave Radiation, Reflectance, Surface Pressure, Precipitation Amount, Vegetation Species, Leaf Characteristics, Leaf Area Index (LAI), Canopy Characteristics, Forests, Rain
Environmental Modeling and Assessment Freeze/Frost, Solar Irradiance, Air Temperature, Maximum/Minimum Temperature, Water Vapor, Surface Winds, Cloud Frequency, Precipitation Amount
An analytical model for estimating canopy transpiration and carbon assimilation fluxes based on canopy light-use efficiency Precipitation Rate, Photosynthetically Active Radiation, Surface Winds, Water Vapor, Air Temperature, Net Radiation, Heat Flux, Atmospheric Carbon Dioxide, Soil Temperature, Soil Heat Budget, Soil Moisture/Water Content, Soil Temperature, Solar Radiation, Surface Temperature, Precipitation Amount, Soil Heat Budget, Soil Moisture/Water Content
Semi-distributed water balance dynamics in a small boreal forest basin Precipitation Amount, Photosynthetically Active Radiation, Surface Winds, Water Vapor, Humidity, Air Temperature, Surface Temperature, Solar Irradiance, Net Radiation, Longwave Radiation, Heat Flux, Surface Pressure, Atmospheric Carbon Dioxide, Soil Temperature, Soil Heat Budget, Water Depth, Vegetation Cover, Forest Composition/Vegetation Structure, Canopy Characteristics, Vegetation Species
General-Circulation-Model Simulations of Future Snowpack in the Western United States Solar Irradiance, Solar Radiation, Air Temperature, Atmospheric Water Vapor, Humidity, Water Vapor, Surface Winds, Precipitation Amount
Equilibrium Evaporation and Positive Evaporation-Surface Temperature Relationships Across a Grassland Soil Temperature, Atmospheric Pressure Measurements, Surface Pressure, Longwave Radiation, Net Radiation, Reflectance, Shortwave Radiation, Surface Temperature, Air Temperature, Surface Winds, Precipitation Amount, Photosynthetically Active Radiation, Soil Heat Budget, Heat Flux, Solar Radiation, Virtual Temperature, Water Vapor, Soil Heat Budget, Soil Temperature, Soil Moisture/Water Content, Soil Moisture/Water Content, Atmospheric Carbon Dioxide, Atmospheric Ozone
Phenological influences on the albedo of prairie grassland and crop fields Soil Temperature, Atmospheric Pressure Measurements, Surface Pressure, Longwave Radiation, Net Radiation, Reflectance, Shortwave Radiation, Surface Temperature, Air Temperature, Surface Winds, Precipitation Amount, Photosynthetically Active Radiation, Soil Heat Budget, Soil Moisture/Water Content, Heat Flux, Solar Radiation, Water Vapor, Soil Heat Budget, Soil Moisture/Water Content, Soil Temperature
Sensible Heat Flux Estimation over the FIFE Site by Neural Networks. Soil Heat Budget, Soil Temperature, Atmospheric Ozone, Heat Flux, Surface Temperature, Air Temperature, Water Vapor, Surface Winds, Soil Heat Budget, Soil Temperature, Atmospheric Carbon Dioxide, Net Radiation, Solar Radiation, Virtual Temperature, Soil Moisture/Water Content, Precipitation Amount, Soil Moisture/Water Content, Atmospheric Pressure Measurements, Surface Pressure, Longwave Radiation, Reflectance, Shortwave Radiation, Photosynthetically Active Radiation, Outgoing Longwave Radiation
A simple single layer model to estimate transpiration from vegetation using multi-spectral and meteorological data Atmospheric Pressure Measurements, Incoming Solar Radiation, Longwave Radiation, Reflectance, Solar Radiation, Surface Temperature, Air Temperature, Surface Winds, Precipitation Rate, Soil Temperature, Solar Irradiance, Soil Heat Budget, Soil Temperature, Heat Flux, Net Radiation, Water Vapor, Soil Heat Budget, Soil Impedance
Modeled responses of terrestrial ecosystems to elevated atmospheric CO<SUB>2</SUB>: a comparison of simulations by the biogeochemistry models of the Vegetation/Ecosystem Modeling and Analysis Project (VEMAP) Organic Matter, Soil Bulk Density, Soil Classification, Soil Depth, Soil Moisture/Water Content, Soil Texture, Solar Irradiance, Solar Radiation, Air Temperature, Atmospheric Water Vapor, Humidity, Water Vapor, Surface Winds, Precipitation Amount, Vegetation Species, Forest Composition/Vegetation Structure, Vegetation Cover, Terrain Elevation