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Implementation of Noah land surface model advances in the National Centers for Environmental Prediction operational mesoscale Eta model

Michael EkKenneth E. MitchellYing LinEric RogersPablo Javier GrunmannVictor KorenGeorge GaynoJ. D. Tarpley

Abstract

We present the impact tests that preceded the most recent operational upgrades to the land surface model used in the National Centers for Environmental Prediction (NCEP) mesoscale Eta model, whose operational domain includes North America. These improvements consist of changes to the “Noah” land surface model (LSM) physics, most notable in the area of cold season processes. Results indicate improved performance in forecasting low‐level temperature and humidity, with improvements to (or without affecting) the overall performance of the Eta model quantitative precipitation scores and upper air verification statistics. Remaining issues that directly affect the Noah LSM performance in the Eta model include physical parameterizations of radiation and clouds, which affect the amount of available energy at the surface, and stable boundary layer and surface layer processes, which affect surface turbulent heat fluxes and ultimately the surface energy budget.

Meteorological Phenomena and SimulationsClimate variability and modelsPlant Water Relations and Carbon DynamicsMesoscale meteorologyEnvironmental scienceMeteorologyPrecipitationClimatologyClimate modelAtmospheric sciencesRelative humidityBoundary layerClimate change

Funding

  • National Aeronautics and Space Administration
Citations
3,234
FWCI
13.48
field-weighted impact
References
53
Percentile
99%
vs. same field & year
Citations per year
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