Search results for "Heat"

showing 10 items of 2717 documents

A Simple method for estimating the latent heat flux over grass from radiative bowen ratio

1998

Abstract The evaluation of crop evapotranspiration from infrared temperature is usually calculated as the residual component of the surface energy balance. This method has given good results over a full grass canopy cover with unstressed transpiration, in spite of the not well understood meaning of the aerodynamic resistance needed. A simple and more accurate method, which determines the Bowen ratio (β) and the latent heat flux (λE) over a reference grass area without knowledge of surface resistances, is proposed. The proportionality between β and a radiative Bowen ratio βs is shown. The radiative Bowen ratio is derived from surface and air temperatures and vapor pressure. This relationship…

Atmospheric ScienceMeteorologyVapor pressureLatent heatEvapotranspirationHeat transferRadiative transferEnvironmental scienceBowen ratioAtmospheric sciencesResidualWind speed
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Analysis of the heat-island effect of the city of Valencia, Spain, through air temperature transects and NOAA satellite data

1991

The aim of this paper is to analyze the heat-island effect of the city of Valencia, Spain, by means of the traditional technique (transects of the air temperature measured from a car) and by means of NOAA satellite thermal images. The analysis includes the nights of 27 and 28 February 1988, on which a light radiative frost occurred. Satellite images were corrected for the emissivity effect by defining an effective emissivity, which was obtained from the emissivity values of the asphalt, walls and roofs of the buildings, and from the proportion of these elements in each pixel. By comparing air temperature values with corrected NOAA data, we have observed that the value of the heat-island eff…

Atmospheric ScienceMeteorologybiologyFrostEmissivityRadiative transferEnvironmental scienceSatelliteUrban heat islandTransectAtmospheric temperaturebiology.organism_classificationValenciaTheoretical and Applied Climatology
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Estimation of the spatially distributed surface energy budget for AgriSAR 2006, part II : Integration of remote sensing and hydrologic modeling

2011

In most hydrologic modeling studies, the hypothesis is made that an improvement in the modeled soil moisture leads to an improvement in the modeled surface energy balance. The objective of this paper is to assess whether this hypothesis is true. The study was performed over the winter wheat fields in the AgriSAR 2006 domain. Remotely sensed soil moisture values and latent heat fluxes were used, in combination with in situ observations. First, the land cover and saturated subsurface flow parameters were estimated using the in situ observations. A spatially distributed model simulation was then performed, for which the Brooks-Corey parameters were derived from a soil texture map, and of which…

Atmospheric ScienceMoistureSoil textureHydrological modellingMETIS-303906Soil scienceLand coverLatent heatEvapotranspirationSoil horizonEnvironmental scienceComputers in Earth SciencesWater contentRemote sensing
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Multilayer modelling of ozone fluxes on winter wheat reveals large deposition on wet senescing leaves

2015

Understanding how ozone is deposited on vegetation canopies is needed to perform tropospheric greenhouse gas budgets and evaluate the associated damage on vegetation. In this study, we propose a new multilayer scheme of ozone deposition on vegetation canopies that predicts stomatal, cuticular and soil deposition pathways separately. This mechanistic ozone deposition scheme is based on the multi-layer, multi-leaf mass and energy transfer model MuSICA. This model was chosen because it explicitly simulates the processes of rain interception, through fall and evaporation at different depths within the vegetation canopy, so that ozone deposition on wet leaf cuticles can be explicitly modelled wi…

Atmospheric ScienceOzonesenescence010504 meteorology & atmospheric sciences[SDV]Life Sciences [q-bio]010501 environmental sciencesAtmospheric sciences01 natural scienceswater filmchemistry.chemical_compoundMuSICAozone depositionEvapotranspirationwheat0105 earth and related environmental sciencesHydrologyGlobal and Planetary Change[ SDV ] Life Sciences [q-bio]ForestryVegetation15. Life on landchemistry13. Climate actionGreenhouse gasEnvironmental scienceDewcuticleInterceptionAgronomy and Crop ScienceDeposition (chemistry)Water vapor
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Modeling impacts of super cool roofs on air temperature at pedestrian level in mesoscale and microscale climate models

2021

Abstract Passive daytime radiative cooling is gaining increasing relevance as recent studies report that newly developed materials with very high reflectivity and emissivity could be able to effectively reduce urban heat stress, when applied as roofing material (super cool roofs). A recent microscale sensitivity study with ENVI-met modeled the impact of super cool roofs with maximum air temperature reductions of around 0.85 K at pedestrian level for an idealized model area. To verify these findings in real urban structures featuring complex building morphologies and varying meteorological conditions, we conducted climate simulations for two contrasting cities: New York City, NY, and Phoenix…

Atmospheric ScienceRadiative coolingbiologyGeography Planning and DevelopmentMesoscale meteorologyEnvironmental Science (miscellaneous)biology.organism_classificationAtmospheric sciencesUrban StudiesWeather Research and Forecasting ModelEnvironmental scienceClimate modelReflective surfacesUrban heat islandPhoenixRoofUrban Climate
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Sensitivity of the atmospheric temperature profile to the aerosol absorption in the presence of dust

2014

Abstract Radiative transfer simulations in the shortwave (SW) and longwave (LW) spectral regions have been carried out to investigate the time evolution of the atmospheric heating/cooling rates and their influence on the temperature profiles under different vertical distributions of the aerosol absorption. The case study is based on measurements made at Rome, Italy, on 20 June 2007, when a dust layer was present above the urban boundary layer (BL) and the column aerosol optical depth at 550 nm was about 0.37. Column-integrated aerosol optical depth and single scattering albedo, as well as vertical profiles of aerosol extinction and meteorological variables have been derived from observation…

Atmospheric ScienceSingle-scattering albedoChemistryLongwaveAerosol radiative forcingSensible heatAtmospheric sciencesAtmospheric temperatureAerosolTemperature profileRadiative transferAerosol absorption/scatteringAerosol radiative forcing;Aerosol absorption/scattering;Atmospheric heating rate;Temperature profileAbsorption (electromagnetic radiation)ShortwaveGeneral Environmental ScienceAtmospheric heating rate
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2009

Abstract. A characterization of the ultra-fine aerosol particle counter COPAS (COndensation PArticle counting System) for operation on board the Russian high altitude research aircraft M-55 Geophysika is presented. The COPAS instrument consists of an aerosol inlet and two dual-channel continuous flow Condensation Particle Counters (CPCs) operated with the chlorofluorocarbon FC-43. It operates at pressures between 400 and 50 hPa for aerosol detection in the particle diameter (dp) range from 6 nm up to 1 μm. The aerosol inlet, designed for the M-55, is characterized with respect to aspiration, transmission, and transport losses. The experimental characterization of counting efficiencies of th…

Atmospheric SciencegeographyRange (particle radiation)geography.geographical_feature_categoryChemistryCondensationAnalytical chemistryParticleInletParticle counterCondenser (heat transfer)AerosolLine (formation)Atmospheric Measurement Techniques
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The Influence of Land Surface Temperature in Evapotranspiration Estimated by the S-SEBI Model

2020

Evapotranspiration (ET) is one of the least understood components of the hydrological cycle. Its applications are varied, from agricultural, ecological and hydrological monitoring, to control of the evolution of climate change. The goal of this work was to analyze the influence that uncertainties in the estimate of land surface temperature (Ts) can cause on ET estimates by S-SEBI model in the Pampa biome area. Also, the specificities of native grassland of Pampa biome related to energy balance were analyzed. The results indicate that the daily evapotranspiration is higher when the pixel Ts is lower, which also shows the influence of land use on the variability of ET. The results demonstrate…

Atmospheric Sciencegeographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesLand useBiomethermal infra-red0211 other engineering and technologiesEnergy balanceClimate changepampa biome02 engineering and technologylcsh:QC851-999Environmental Science (miscellaneous)Atmospheric sciences01 natural sciencesGrasslandlatent heat fluxLatent heatEvapotranspirationEnvironmental sciencelcsh:Meteorology. ClimatologyWater cycle021101 geological & geomatics engineering0105 earth and related environmental sciencesAtmosphere
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Effects of Urbanization on the Temperature Inversion Breakup in a Mountain Valley with Implications for Air Quality

2014

AbstractMany cities located in valleys with limited ventilation experience serious air pollution problems. The ventilation of an urban valley can be limited not only by orographic barriers, but also by urban heat island–induced circulations and/or the capping effect of temperature inversions. Furthermore, land-use/-cover changes caused by urbanization alter the dynamics of temperature inversions and urban heat islands, thereby affecting air quality in an urban valley. By means of idealized numerical simulations, it is shown that in a mountain valley subject to temperature inversions urbanization can have an important influence on air quality through effects on the inversion breakup. Dependi…

Atmospheric Sciencegeographygeography.geographical_feature_categoryUrban climatologyUrbanizationClimatologyEnvironmental scienceInversion (meteorology)Urban heat islandBreakupUrban areaAir quality indexOrographic liftJournal of Applied Meteorology and Climatology
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Enhanced Tropospheric Wave Forcing of Two Anticyclones in the Prephase of the January 2009 Major Stratospheric Sudden Warming Event

2017

Monthly Weather Review, 145 (5)

Atmospheric Scienceinfo:eu-repo/classification/ddc/550010504 meteorology & atmospheric sciencesPolar nightPhysicsTropospheric waveMadden–Julian oscillationForcing (mathematics)010502 geochemistry & geophysicsAtmospheric sciences01 natural sciencesEarth sciencesLa NiñaHeat fluxAnticycloneClimatologyddc:550Environmental scienceddc:530info:eu-repo/classification/ddc/530Stratosphere0105 earth and related environmental sciencesMonthly Weather Review
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