Search results for "Planetary boundary layer"

showing 10 items of 50 documents

In search for a canonical design ABL stability class for wind farm turbines

2016

Production as well as loading of wake exposed wind turbines is known to depend significantly on stability of the Atmospheric Boundary Layer (ABL), which adds a new dimension to design of wind farm turbines. Adding this new aspect in wind turbine design makes the number of design cycle computations to blow up with a factor equal to the number of representative stability bin classes. The research question to be answered in this paper is: Can an ABL stability probability distribution in a meaningful way be collapsed into a representative design stability class as based on a (predefined) confidence level.

HistoryEngineeringWind powerbusiness.industryPlanetary boundary layer020209 energyComputation02 engineering and technologyWake01 natural sciencesStability (probability)Bin010305 fluids & plasmasComputer Science ApplicationsEducationDimension (vector space)Control theory0103 physical sciences0202 electrical engineering electronic engineering information engineeringWind turbine designbusinessJournal of Physics: Conference Series
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Simulation of extreme heat events over the Valencia coastal region: Sensitivity to initial conditions and boundary layer parameterizations

2019

The Valencia coastal region (Western Mediterranean) is especially sensitive to extreme heat events, where they are really common. However, due to its geophysical characteristics and climatic conditions, the incidence of high and extreme temperatures may still be modulated over this area by means of sea breeze circulations, defining a Sea Breeze Convergence Zone (SBCZ) due to the meet and interaction of these mesoscale conditions and Western synoptic-scale wind regimes. A proper definition of this convergence zone is of significant importance over the study area for the simulation and forecast of intense-heat meteorological events. This study analyses a week period in August 2010 over this a…

Mediterranean climateAtmospheric ScienceDaytime010504 meteorology & atmospheric sciencesPlanetary boundary layerFísica de la TierraMesoscale meteorologyBoundary layer parameterizations010501 environmental sciencesPBL parameterization schemesAtmospheric sciencesConvergence zone01 natural sciencesMesoscale modellingBoundary layerSea breezeRegional Atmospheric Modeling SystemEnvironmental scienceModel initializationSummer temperaturesExtreme heat0105 earth and related environmental sciences
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2016

Abstract. Characterization of daytime sources of nitrous acid (HONO) is crucial to understand atmospheric oxidation and radical cycling in the planetary boundary layer. HONO and numerous other atmospheric trace constituents were measured on the Mediterranean island of Cyprus during the CYPHEX (CYprus PHotochemical EXperiment) campaign in summer 2014. Average volume mixing ratios of HONO were 35 pptv (±25 pptv) with a HONO ∕ NOx ratio of 0.33, which was considerably higher than reported for most other rural and urban regions. Diel profiles of HONO showed peak values in the late morning (60 ± 28 pptv around 09:00 local time) and persistently high mixing ratios during daytime (45 ± 18 pptv), i…

Mediterranean climateAtmospheric ScienceNitrous acidDaytime010504 meteorology & atmospheric sciencesPlanetary boundary layer010501 environmental sciencesAtmospheric sciences01 natural scienceschemistry.chemical_compoundchemistryEnvironmental scienceLinear correlationCyclingDiel vertical migration0105 earth and related environmental sciencesAtmospheric Chemistry and Physics
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Constraining the ship contribution to the aerosol of the central Mediterranean

2017

Particulate matter with aerodynamic diameters lower than 10 µm, (PM10) aerosol samples were collected during summer 2013 within the framework of the Chemistry and Aerosol Mediterranean Experiment (ChArMEx) at two sites located north (Capo Granitola) and south (Lampedusa Island), respectively, of the main Mediterranean shipping route in the Straight of Sicily. The PM10 samples were collected with 12 h time resolutions at both sites. Selected metals, main anions, cations and elemental and organic carbon were determined. The evolution of soluble V and Ni concentrations (typical markers of heavy fuel oil combustion) was related to meteorology and ship traffic intensity in the Straight of Sicily…

Mediterranean climateTotal organic carbonAtmospheric Science010504 meteorology & atmospheric sciencesMeteorologyPlanetary boundary layerAtmospheric Science HEAVY FUEL-OIL; PARTICULATE MATTER; SOURCE APPORTIONMENT; AIR-QUALITY; ATMOSPHERIC PARTICULATE; CHEMICAL-COMPOSITION; PARTICLE EMISSIONS; DIESEL-ENGINES; PM10 SOURCES; IMPACT010501 environmental sciencesParticulatesAtmospheric sciencesCombustion01 natural scienceslcsh:QC1-999Aerosollcsh:ChemistryBoundary layerlcsh:QD1-999lcsh:PhysicsAir mass0105 earth and related environmental sciences
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Implementation of non-local boundary layer schemes in the Regional Atmospheric Modeling System and its impact on simulated mesoscale circulations

2016

This paper proposes the implementation of different non-local Planetary Boundary Layer schemes within the Regional Atmospheric Modeling System (RAMS) model. The two selected PBL parameterizations are the Medium-Range Forecast (MRF) PBL and its updated version, known as the Yonsei University (YSU) PBL. YSU is a first-order scheme that uses non-local eddy diffusivity coefficients to compute turbulent fluxes. It is based on the MRF, and improves it with an explicit treatment of the entrainment. With the aim of evaluating the RAMS results for these PBL parameterizations, a series of numerical simulations have been performed and contrasted with the results obtained using the Mellor and Yamada (M…

Meteorologie en LuchtkwaliteitAtmospheric ScienceMeteorology and Air Quality010504 meteorology & atmospheric sciencesMeteorologyNumerical weather prediction/forecastingPlanetary boundary layer0208 environmental biotechnologyMesoscale meteorologyTerrain02 engineering and technology01 natural sciencesWind speedEddy diffusionMesoscale modelling0105 earth and related environmental sciencesNon-local schemesWIMEKFísica de la TierraEntrainment (meteorology)020801 environmental engineeringPBL parameterizationBoundary layerBoundary layerRegional Atmospheric Modeling SystemRAMS modelEnvironmental science
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Combining a Two-Source Patch Model with Satellite Data to Monitor Daily Evapotranspiration at a Regional Scale

2008

In this work, we present a micro-meteorological approach for estimating surface energy fluxes that can be operationally used together with satellite images to monitor surface energy fluxes at a regional scale. In particular we will focus on the retrieval of daily evapotranspiration. The feasibility of the model is explored at a local scale using data collected over a maize crop in Beltsville, Maryland, USA, and a boreal forest in Sodankyla, Finland. Comparison of the results with ground measurements shows errors between plusmn15 and plusmn50 W m-2 for the retrieval of net radiation, soil heat flux, and sensible and latent heat fluxes in both sites. A methodology to apply the model to Landsa…

MeteorologyPlanetary boundary layerEvapotranspirationLatent heatSatelliteVegetationSensible heatScale (map)Atmospheric temperatureRemote sensingIGARSS 2008 - 2008 IEEE International Geoscience and Remote Sensing Symposium
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Numerical simulations of air pollutant dispersion in a stratified planetary boundary layer

1978

Abstract A numerical model is described for computing pollutant concentration distributions downwind from a source. It is based on the three-dimensional dispersion equation governing the time-dependent advective and diffusive transport of air pollutants and is solved numerically by a mixed Lagrangian-Eulerian finite-difference scheme. The model includes the vertical wind shear, the turning of the actual wind, and vertical variations of the vertical eddy diffusivity. In this paper the model is used to simulate the pollutant dispersion process in a stratified planetary boundary layer. The vertical profiles of horizontal mean wind and vertical eddy diffusivities are calculated numerically from…

PollutantLog wind profileChemistryAdvectionPlanetary boundary layerWind shearAtmospheric instabilityAtmospheric sciencesDispersion (water waves)PollutionPhysics::Atmospheric and Oceanic PhysicsEddy diffusionAtmospheric Environment (1967)
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Thermal Infrared Emissivity Dependence on Soil Moisture in Field Conditions

2011

An accurate estimate of land surface temperature, which is a key parameter in surface energy balance models, requires knowledge of surface emissivity. Emissivity dependence on soil water content has been already reported and modeled under controlled conditions at the laboratory. This paper completes and extends that previous work by providing emissivity measurements under field conditions without elimination of impurities, local heterogeneities, or soil cracks appearing in the drying process. The multispectral radiometer CE312-2, with five narrow bands and a broad band in the 8-13-μm range, was used, and surface emissivity values were determined through a temperature-emissivity separation a…

RadiometerSoil testPlanetary boundary layerSoil waterEmissivityGeneral Earth and Planetary SciencesRadiometryEnvironmental scienceSoil scienceElectrical and Electronic EngineeringAtmospheric temperatureWater contentRemote sensingIEEE Transactions on Geoscience and Remote Sensing
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Radiative and dynamic effects of absorbing aerosol particles over the Pearl River Delta, China

2008

Abstract Results are reported from a ground-based measurement campaign conducted in a highly polluted region in southeast of China in October–November 2004. The experiment focused on absorbing aerosol particles and their effects on the solar radiation field and local meteorology. A Raman lidar in conjunction with Sun photometer data measured profiles of particle extinction; ground-based in situ data of aerosol optical properties were collected by nephelometer and absorption photometer. Exceptionally high values of aerosol optical depth of up to 1.5 were observed. The measurements were input to a radiative transfer model, which simulated high solar radiative forcing values for the aerosol pa…

Sun photometerAtmospheric ScienceAtmospheric radiative transfer codesNephelometerMeteorologyPlanetary boundary layerRadiative transferEnvironmental scienceRadiative forcingConvective Boundary LayerPhysics::Atmospheric and Oceanic PhysicsGeneral Environmental ScienceAerosolAtmospheric Environment
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A numerical simulation scheme for the albedo of city street canyons

1985

A numerical scheme is described for the calculation of effective albedo values of long city street canyons. The method is based on a generalization of the radiation model for inclined surfaces recently presented by Bruhl and Zdunkowski (1983). Calculated albedo values are compared with Aida's (1982) experimentally determined results. It is found that experiment and theory are in reasonable and in some cases in excellent agreement. Additional results obtained by varying the geometry of the street canyon as well as the surface reflectivities are shown to demonstrate the versatility of the calculation scheme.

Surface (mathematics)CanyonAtmospheric Sciencegeographygeography.geographical_feature_categoryMeteorologyComputer simulationGeneralizationPlanetary boundary layerGeometryAlbedoScheme (mathematics)Radiative transferGeologyBoundary-Layer Meteorology
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