A catchment-based approach to modeling land surface processes in a general circulation model
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- Type
- article
- Published
- 2000-10-27
- Cited by
- 292
- References
- 50
- OpenAlex
- https://openalex.org/W49293505
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:131224624
Keywords
Surface runoff, Environmental science, Drainage basin, Hydrology (agriculture), Geology
References
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- CLIMATE AND THE OCEAN CIRCULATION1
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- Numerical Simulation of the January and July Global Climate with a Two-Level Atmospheric Model
- A topological system for delineation and codification of the Earth's river basins
- Radar remote sensing of the source areas from the Coët‐Dan catchment
- Modeling the land surface boundary in climate models as a composite of independent vegetation stands
- The introduction of macroscale hydrological complexity into land surface-atmosphere transfer models and the effect on planetary boundary layer development.
- An Efficient Approach to Modeling the Topographic Control of Surface Hydrology for Regional and Global Climate Modeling
- On constraining the predictions of a distributed model: The incorporation of fuzzy estimates of saturated areas into the calibration process
- A Statistical Exploration of the Relationships of Soil Moisture Characteristics to the Physical Properties of Soils
- The Pilot Phase of the Global Soil Wetness Project
- An integrated biosphere model of land surface processes
- A Revised Land Surface Parameterization (SiB2) for Atmospheric GCMS. Part I: Model Formulation
- A catchment‐based approach to modeling land surface processes in a general circulation model: 1. Model structure
- A Simple Biosphere Model (SIB) for Use within General Circulation Models
- Sensitivity of the hydrological cycle to the parametrization of soil hydrology in a GCM
Cited by
- Performance Assessment of Satellite Rainfall Products for Hydrologic Modeling
- Forcing a Global, Offline Land Surface Modeling System with Observation-Based Fields
- Landscape structure, regimes, and the co-evolution of hydrologic systems
- Calibration of the Interaction Soil Biosphere Atmosphere land‐surface scheme on a small tropical high‐mountain basin (Cordillera Real, Bolivia)
- Predicting Surface Runoff from Catchment to Large Region
- Drought indicators based on model‐assimilated Gravity Recovery and Climate Experiment (GRACE) terrestrial water storage observations
- Intercomparison of spring soil moisture among multiple reanalysis data sets over eastern China
- Assimilation of passive and active microwave soil moisture retrievals
- Ecological Climatology: Concepts and Applications
- Modeling the exchange of water and energy over natural land surfaces = Het modelleren van de uitwisseling van water en energie over natuurlijke landschappen
- Enhancing model‐based land surface temperature estimates using multiplatform microwave observations
- An analytical method for predicting surface soil moisture from rainfall observations
- An assessment of surface soil temperature products from numerical weather prediction models using ground‐based measurements
- Representation of subsurface storm flow and a more responsive water table in a TOPMODEL‐based hydrology model
- Advantages of a topographically controlled runoff simulation in a soil-vegetation-atmosphere transfer model
- Understanding soil moisture dynamics using observations and climate models
- Reconstructing solid precipitation from snow depth measurements and a land surface model
- Calibrating Above and Below Snow Line Precipitation as Inputs to Mountain Hydrology Models - Final Report
- Couplings between changes in the climate system and biogeochemistry
- Incorporating water table dynamics in climate modeling: 2. Formulation, validation, and soil moisture simulation
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