Search results for "Transpiration"

showing 10 items of 240 documents

A comparison of growth, gas exchange and productivity in Olea europaea cultivars growing on Mediterranean hills.

2008

This work concerns the ecophysiology of olive cultivars growing on Mediterranean hills. Our aim was to quantify the photosynthetic efficiency of the cultivars in cultivation. In two hill areas, we tested the phenological and ecophysio- logical variability of olive cultivars grown on non-irrigated land, with different pedo-climatic characteristics. Cultivation area 1 falls within a natural protected area, while area 2 is on farming land. The cultivars selected (‘Biancolilla’, ‘Nocellara del Belice’ and ‘Giarraffa’) belong to the local genetic pool and require different amounts of water. We followed the phe- nological phases of shoot growth and drupe production. We studied leaf anatomy and ch…

Olea europaea L. shoot growth mesophyll structure chloroplast ultrasctructure CO2 absorption stomatal conductance transpiration NP productivity.
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Maximum and Actual Evapotranspiration for Barley (Hordeum vulgare L.) through NOAA Satellite Images in Castilla-La Mancha, Spain

1996

Abstract An easy-to-follow methodology is developed for the assessment of regional evapotranspiration in Castilla-La Mancha, a semi-arid region of Spain. The methodology is applied to barley crops to monitor the irrigation scheduling over the region, by using remote sensing techniques supplemented by ground measurements. The methodology can be based on either of two models. In the first one, established by Caselles and Delegido, 1 the reference evapotranspiration, ET o , derives from the expression ET o = AR g (T a ) m a x + BR g + C where A, B and C are empirical coefficients, depending on climatic parameters and determined for each region; R g is the daily global radiation; and ( T a ) m …

On boardAtmosphereAdvanced very-high-resolution radiometerEvapotranspirationAir temperatureIrrigation schedulingEnvironmental scienceSatelliteHordeum vulgareAquatic ScienceAtmospheric sciencesRemote sensingJournal of Agricultural Engineering Research
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Evapotranspiration simulations in ISIMIP2a-Evaluation of spatio-temporal characteristics with a comprehensive ensemble of independent datasets

2018

Actual land evapotranspiration (ET) is a key component of the global hydrological cycle and anessential variable determining the evolution of hydrological extreme events under different climate change scenarios. However, recently available ET products show persistent uncertainties thatare impeding a precise attribution of human-induced climate change. Here, we aim at comparing arange of independent global monthly land ET estimates with historical model simulations from theglobal water, agriculture, and biomes sectors participating in the second phase of the Inter-SectoralImpact Model Intercomparison Project (ISIMIP2a). Among the independent estimates, we use theEartH2Observe Tier-1 dataset …

PARAMETERIZATION010504 meteorology & atmospheric sciences0208 environmental biotechnologyREANALYSIS DATA02 engineering and technologyForcing (mathematics)01 natural sciencesISIMIP2aEnvironmental Science(all)Evapotranspirationddc:550Range (statistics)Cluster AnalysisMeteorology & Atmospheric SciencesWATERWater cycleuncertaintyGeneral Environmental ScienceUncertaintyVariance (accounting)Explained variationGLOBAL TERRESTRIAL EVAPOTRANSPIRATIONVariable (computer science)[SDU.STU.CL]Sciences of the Universe [physics]/Earth Sciences/ClimatologyClimatologyPhysical SciencesLife Sciences & BiomedicinePROJECTHYDROLOGICAL MODELSevapotranspirationClimate changeEnvironmental Sciences & EcologySOIL-MOISTUREhydrological extreme eventsLAND-SURFACE MODELhydrological extreme events ; cluster analysis ; uncertainty ; ISIMIP2a ; evapotranspiration[SDU.STU.HY]Sciences of the Universe [physics]/Earth Sciences/HydrologyHydrological extreme events0105 earth and related environmental sciencesScience & TechnologyRenewable Energy Sustainability and the EnvironmentPublic Health Environmental and Occupational HealthPOTENTIAL EVAPOTRANSPIRATION020801 environmental engineeringEarth sciencesISIMIP2a; evapotranspiration; uncertainty; cluster analysis; hydrological extreme events13. Climate actionEnvironmental scienceEnvironmental SciencesHIGH-RESOLUTIONcluster analysis
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A portable NMR sensor to measure dynamic changes in the amount of water in living stems or fruit and its potential to measure sap flow.

2014

Nuclear magnetic resonance (NMR) and NMR imaging (magnetic resonance imaging) offer the possibility to quantitatively and non-invasively measure the presence and movement of water. Unfortunately, traditional NMR hardware is expensive, poorly suited for plants, and because of its bulk and complexity, not suitable for use in the field. But does it need to be? We here explore how novel, small-scale portable NMR devices can be used as a flow sensor to directly measure xylem sap flow in a poplar tree (Populus nigra L.), or in a dendrometer-like fashion to measure dynamic changes in the absolute water content of fruit or stems. For the latter purpose we monitored the diurnal pattern of growth, ex…

PhaseolusPlant StemsPhysiologyChemistryPlant ExudatesFlow (psychology)food and beveragesXylemWaterPlant TranspirationPlant ScienceMeasure (mathematics)Magnetic Resonance ImagingQuercus robur L.TreesQuercusPoint of deliveryPopulusXylemFruitBotanyddc:630Flow sensorBiological systemWater contentTree physiology
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Uniform climate sensitivity in tree-ring stable isotopes across species and sites in a mid-latitude temperate forest.

2014

Tree-ring stable isotopes, providing insight into drought-induced eco-physiological mechanisms, are frequently used to reconstruct past changes in growing season temperature and precipitation. Their climatic response is, however, still not fully understood, particularly for data originating from non-extreme, mid-latitude environments with differing ecological conditions. Here, we assess the response of δ(13)C, δ(18)O and tree-ring width (TRW) from a temperate mountain forest in the Austrian pre-Alps to climate and specific drought events. Variations in stem growth and isotopic composition of Norway spruce, common beech and European larch from dry, medium and moist sites are compared with re…

PhysiologyCloud coverClimateGrowing seasonLarixPlant ScienceForestsOxygen IsotopesAtmospheric sciencesSoilTemperate climateFagusPhotosynthesisPiceaBeechTranspirationCarbon IsotopesbiologyPlant StemsEcologyTemperatureTemperate forestbiology.organism_classificationddc:DroughtsSunlightEnvironmental scienceLarchTemperate rainforestTree physiology
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Salt accumulation and effects within foliage of Tilia × vulgaris trees from the street greenery of Riga, Latvia

2020

International audience; Green infrastructures within sprawling cities provide essential ecosystem services, increasingly undermined by environmental stress. The main objective in this study was to relate the allocation patterns of NaCl contaminants to injury within foliage of lime trees mechanistically and distinguish between the effects of salt and other environmental stressors. Using field material representative of salt contamination levels in the street greenery of Riga, Latvia, the contribution of salt contaminants to structural and ultrastructural injury was analyzed, combining different microscopy techniques. On severely salt-polluted and dystrophic soils, the foliage of street lime …

PollutionEnvironmental Engineering010504 meteorology & atmospheric sciencesmedia_common.quotation_subjectSalt (chemistry)Sodium Chloride010501 environmental sciencesBiologyengineering.material01 natural sciencesTreesNutrientNaClTiliaEnvironmental ChemistryTiliaCryo-energy-dispersive X-ray microanalysisWaste Management and DisposalEcosystem0105 earth and related environmental sciencesLimemedia_commonchemistry.chemical_classificationPathological plant anatomyGreen urban infrastructuresNutrients15. Life on landContaminationbiology.organism_classificationLatviaPollution[SDE.ES]Environmental Sciences/Environmental and SocietyCryo-microtomyPlant LeavesLime treesHorticulturechemistrySalt injurySoil waterTranspiration streamengineering
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2021

Abstract Terrestrial Essential Climate Variables, known as terrestrial ECVs, are key sources of information for both application- and scientific- oriented research. A large number of global terrestrial ECV products have been derived from satellite observations, and more are forthcoming. To unlock the full potential of these products, end-users need to know their uncertainties and error magnitudes. Due to the lack of conformity among validation strategies, a wide range of validation approaches have been employed to assess the quality of these products, and have resulted in reduced comparability even for the same terrestrial ECV. Addressing this challenge in validation practices requires the …

Protocol (science)Global and Planetary Change010504 meteorology & atmospheric sciencesScale (chemistry)Comparability0211 other engineering and technologies02 engineering and technologyLand coverManagement Monitoring Policy and LawAlbedo01 natural sciences13. Climate actionNeed to knowEvapotranspirationEnvironmental scienceSatelliteComputers in Earth Sciences021101 geological & geomatics engineering0105 earth and related environmental sciencesEarth-Surface ProcessesRemote sensingInternational Journal of Applied Earth Observation and Geoinformation
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A simple algorithm to estimate evapotranspiration from DAIS data: Application to the DAISEX campaigns

2005

DOI:10.1016/j.jhydrol.2005.03.027; The knowledge of evapotranspiration is of great interest in many applications such as assessing irrigation water use. In this paper, a methodology is presented to estimate evapotranspiration using the surface energy balance model S-SEBI (Simplified Surface Energy Balance Index) and the evaporative fraction. The method is applicable under the assumptions of constant atmospheric conditions and sufficient wet and dry pixels over the image. The model uses remotely sensed parameters such as albedo, MSAVI (Modified Soil Adjusted Vegetation Index) and surface temperature and emissivity images. The methodology has been applied over the Barrax test site, located in…

RAYONNEMENTDAIS010504 meteorology & atmospheric sciencesCOUVERT VEGETALGEOTHERMIEIMAGE SATELLITES-SEBI0207 environmental engineeringImaging spectrometerEnergy balanceDais02 engineering and technologyHERBE01 natural sciencesALBEDO[SDV.EE.ECO]Life Sciences [q-bio]/Ecology environment/EcosystemsALGORITHMEEVALUATIONEvapotranspirationIRRIGATIONEmissivityFLUX ENERGETIQUE020701 environmental engineeringTELEDETECTIONEvaporative fraction0105 earth and related environmental sciencesWater Science and TechnologyRemote sensingTEMPERATURE DE SURFACELUZERNEEVAPOTRANSPIRATIONEvapotranspirationAlbedoSPECTROMETRIEEVAPORATIONINTERPRETATION D'IMAGEMAISNet radiation fluxSoil heat fluxESTIMATIONSoil waterEnvironmental scienceSurface waterMETHODOLOGIEMODELE S-SEBI
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Thermal remote sensing in the framework of the SEN2FLEX project: field measurements, airborne data and applications

2008

A description of thermal radiometric field measurements carried out in the framework of the European project SENtinel-2 and Fluorescence Experiment (SEN2FLEX) is presented. The field campaign was developed in the region of Barrax (Spain) during June and July 2005. The purpose of the thermal measurements was to retrieve biogeophysical parameters such as land surface emissivity (LSE) and temperature (LST) to validate airborne-based methodologies and to characterize different surfaces. Thermal measurements were carried out using two multiband field radiometers and several broadband field radiometers, pointing at different targets. High-resolution images acquired with the Airborne Hyperspectral…

RadiometerMean squared errorMeteorologyHyperspectral imagingContext (language use)WRSADLIB-ART-2687Root mean squareEvapotranspirationEmissivityGeneral Earth and Planetary SciencesEnvironmental scienceRadiometryRemote sensingInternational Journal of Remote Sensing
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Assessing opportunities for water savings in large-scale pressurized irrigation systems using actual evapotranspiration retrieved by surface energy b…

Remote sensing allows the observation of large land stretches and the acquisition of worthwhile information that can be used efficaciously in agro-hydrologic systems. Satellite imagery associated to computational models provide a reliable resource in estimating evapotranspiration (ET) fluxes based on surface energy balance. On irrigated crops, quantifying the spatial distribution of actual ET enables a broad range of applications such as irrigation management, monitoring water distribution, assessing crop water status and irrigation system performance. The general objective of the research was to propose a methodology to estimate ET by using Landsat Thematic Mapper (TM) images and surface e…

Remote sensing surface energy balance actual evapotranspiration irrigation water saving Irrigation monitoring crop water status.Settore ICAR/02 - Costruzioni Idrauliche E Marittime E Idrologia
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