Evaluation of the Noah Land Surface Model Using Data from a Fair-Weather IHOP_2002 Day with Heterogeneous Surface Fluxes
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- Type
- article
- Published
- 2008-12-01
- Cited by
- 81
- References
- 56
- Access
- Open access
- OpenAlex
- https://openalex.org/W1973582038
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:32353030
Keywords
Data assimilation, Sensible heat, Environmental science, Roughness length, Atmospheric sciences
References
- Diurnal Variations of Thermal Roughness Height over a Grassland
- Non-local turbulent transport pollution dispersion aspects of coherent structure of convective flows
- Land Surface Heterogeneity in the Cooperative Atmosphere Surface Exchange Study (CASES-97). Part I: Comparing Modeled Surface Flux Maps with Surface-Flux Tower and Aircraft Measurements
- Observations of the ABL Structures over a Heterogeneous Land Surface during IHOP_2002
- Enhancement of Convective Precipitation by Mesoscale Variations in Vegetative Covering in Semiarid Regions
- Errors in airborne flux measurements
- The Effect of Soil Thermal Conductivity Parameterization on Surface Energy Fluxes and Temperatures
- Determination of Surface Fluxes from the Surface Radiative Temperature
- Analysis of Urban-Rural Canopy Using a Surface Heat Flux/Temperature Model
- Variability in global land surface energy budgets during 1987–1988 simulated by an off-line land surface model
- Evaluating NCEP Eta Model–Derived Data against Observations
- Effect of Land–Atmosphere Interactions on the IHOP 24–25 May 2002 Convection Case
- A study of convection initiation in a mesoscale model using high-resolution land surface initial conditions
- The Dependence of Bare Soil Albedo on Soil Water Content.
- Geostationary satellite parameters for surface energy balance
- A soil‐vegetation‐atmosphere transfer scheme for modeling spatially variable water and energy balance processes
- Interaction between soil hydrology and boundary-layer development
- Analysis of an empirical model for soil heat flux under a growing wheat crop for estimating evaporation by an infrared-temperature based energy balance equation
- Choosing the Averaging Interval for Comparison of Observed and Modeled Fluxes along Aircraft Transects over a Heterogeneous Surface
- Influence of Land Cover and Soil Moisture on the Horizontal Distribution of Sensible and Latent Heat Fluxes in Southeast Kansas during IHOP_2002 and CASES-97
Cited by
- Simulating and explaining passive air sampling rates and analyte air concentrations for semi-volatile compounds on polyurethane foam disks
- Assessing the Surface Energy Balance Components in the Snake River Basin
- Impacts of spatial heterogeneity on the measurement and modeling of land-atmosphere interactions
- Comparison of prognostic and diagnostic surface flux modeling approaches over the Nile River basin
- Modeling of regional meteorological fields with high spatial resolution for West Siberia
- A method for the determination of the hydraulic properties of soil from MODIS surface temperature for use in land‐surface models
- Insights into the Challenges of Modeling the Atmospheric Boundary Layer
- Development and evaluation of a mosaic approach in the WRF‐Noah framework
- Toward a better integration of biological data from precipitation manipulation experiments into Earth system models
- Extreme Flood Response: The June 2008 Flooding in Iowa
- Land‐atmosphere coupling and summer climate variability over East Asia
- Analysis of the variability of canopy resistance over a desert steppe site in Inner Mongolia, China
- Effects of surface heat and moisture exchange on ARW-WRF warm-season precipitation forecasts over the central United States
- Simulating the IHOP_2002 Fair-Weather CBL with the WRF-ARW–Noah Modeling System. Part I: Surface Fluxes and CBL Structure and Evolution along the Eastern Track
- EFFECTS OF COUPLING IN UNDERSTANDING THE SURFACE ENERGY BALANCE IN THE SNAKE RIVER BASIN, IDAHO
- A model of energy budgets over water, snow, and ice surfaces
- Assessing Impacts of Integrating MODIS Vegetation Data in the Weather Research and Forecasting (WRF) Model Coupled to Two Different Canopy-Resistance Approaches
- Estimating turbulent fluxes through assimilation of geostationary operational environmental satellites data using ensemble Kalman filter
- Enhanced modeling of latent heat flux from urban surfaces in the Noah/single-layer urban canopy coupled model
- Ensemble Data Assimilation to Characterize Surface-Layer Errors in Numerical Weather Prediction Models
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