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Bulk aerodynamisk flux×Eddy Covariance×Monin-Obukhovs lighedsteori×WRF Model×
FagområdeMeteorologiMeteorologiMeteorologiMeteorologi
FamilieProcess / pipelineProcess / pipelineProcess / pipelineProcess / pipeline
Oprindelsesår1981195119542000
OphavspersonLarge and PondSwinbankMonin and ObukhovSkamarock and Klemp
TypeSurface flux estimation methodMicrometeorological flux measurementSimilarity scaling frameworkAtmospheric simulation system
Oprindelig kildeLarge, W. G., & Pond, S. (1981). Open ocean momentum flux measurements in moderate to strong winds. Journal of Physical Oceanography, 11(3), 324-336. DOI ↗Baldocchi, D. (2003). Assessing the eddy covariance technique for evaluating carbon dioxide fluxes of ecosystems: past, present and future. Global Change Biology, 9(4), 479-492. DOI ↗Monin, A. S., & Obukhov, A. M. (1954). Basic laws of turbulent mixing in the ground layer of the atmosphere. Tr. Akad. Nauk SSSR, 24, 163-187. link ↗Skamarock, W. C., Klemp, J. B., Dudhia, J., et al. (2008). A Description of the Advanced Research WRF Version 3. NCAR Technical Note NCAR/TN-475+STR. link ↗
AliasserBulk aerodynamic approach, Bulk flux parametrization, Aerodynamic bulk methodEddy covariance, EC flux, Eddy correlation, Direct flux measurementMonin-Obukhov, Similarity theory, Monin-Obukhov length scaleWeather Research and Forecasting, WRF, ARW, NMM
Relaterede3334
ResuméThe bulk aerodynamic method estimates surface energy and momentum fluxes from standard meteorological observations. Rather than measuring turbulent fluxes directly, it parameterizes them using measurements of wind speed, temperature, and moisture at a reference height (typically 10 m) and surface conditions, multiplied by empirically derived drag and transfer coefficients.The eddy covariance method is a direct, micrometeorological technique that measures turbulent fluxes of momentum, heat, water vapor, and CO2 by computing the covariance between high-frequency fluctuations of wind velocity and scalar properties (temperature, humidity, concentration). It is the gold standard for measuring ecosystem-atmosphere exchanges and validating model parameterizations.Monin-Obukhov similarity theory is a fundamental framework in boundary layer meteorology that describes how wind speed, temperature, and humidity vary with height near the surface. Published in 1954, it shows that normalized vertical profiles depend on a single dimensionless parameter—the Monin-Obukhov stability parameter—which quantifies the balance between mechanical turbulence and buoyant convection.The Weather Research and Forecasting (WRF) model is a mesoscale atmospheric simulation system used for weather forecasting, research, and climate applications. Developed cooperatively by NCAR, NOAA, and academic institutions, WRF became operational in 2004 and has become one of the most widely used atmospheric models worldwide.
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ScholarGateSammenlign metoder: Bulk Aerodynamic Flux · Eddy Covariance · Monin-Obukhov Similarity · WRF Model. Hentet 2026-06-20 fra https://scholargate.app/da/compare