Search results for "Solar energy."

showing 10 items of 148 documents

Extreme overirradiance events in Norway: 1.6 suns measured close to 60°N

2015

Abstract We report the most extreme overirradiance event of 1.6 kW/m 2 measured so far in Grimstad, southern Norway (latitude 58°20′), at altitude of only about 60 m a.s.l. Images of the sky conditions taken with a wide-dynamic-range camera suggest that this is not the ultimate value for our location, but that extremes as high as 1.7 kW/m 2 may be possible. The phenomenon was caused by strong forward scattering of sunlight within 3° around the solar disk in thin, broken altocumulus clouds. The normalized spectrum of sunlight during such extreme events is very similar to the normalized clear-sky spectrum measured at Air Mass 1.4 and irradiance of 1.0 kW/m 2 . We suggest that the values excee…

SunlightRenewable Energy Sustainability and the Environmentmedia_common.quotation_subjectEquatorIrradianceAir mass (solar energy)Atmospheric sciencesSuns in alchemyLatitudeAltitudeSkyGeneral Materials ScienceGeologymedia_commonSolar Energy
researchProduct

Fabrication and characterization of ZnO nanowires/CdSe/CuSCN eta-solar cell

2006

Des cellules solaires extremely thin absorber (eta) ZnO/CdSe/CuSCN a base de nanofils de ZnO ont ete realisees avec succes en utilisant des techniques faciles d'acces de depot en solution et par voie electrochimique. Une couche constituee de nanofils de ZnO monocristallin de plusieurs microns de hauteur et de 100-200 nm de diametre a ete deposee sur un substrat de verre conducteur (SnO 2 :F) recouvert d'une couche de ZnO formee par pyrolyse de spray agissant comme couche electronique bloquante. Une couche mince de 30-40 nm de CdSe jouant le role d'un absorbeur a ete electrodeposee de maniere conforme le long des nanofils de ZnO. Les espaces entre les nanofils composite de ZnO/CdSe ont ete r…

Surface coatingMaterials scienceGeneral Chemical EngineeringNanostructured materialsZno nanowiresZinc compoundsSolar energy conversionPhysical chemistryNanotechnologyGeneral ChemistryComptes Rendus Chimie
researchProduct

CFD simulation of a membrane distillation module channel

2009

The interest towards the use of membrane distillation (MD) processes for seawater desalination has been rising recently due to the ease of coupling MD with waste and/or solar thermal energy. Notwithstanding the flexibility of the process and its potential for further developments in membrane performances, one of the main drawbacks is the thermal efficiency reduction caused by temperature polarization. Because of such phenomenon, only a small amount of the driving force potentially available for the separation process, i.e. the temperature difference between evaporating and condensing fluids, is actually used for the separation. In order to reduce temperature polarization a study on the effe…

Thermal efficiencySettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi Chimicibusiness.industryChemistrySpacerSettore ING-IND/25 - Impianti ChimiciFlow (psychology)Mechanical engineeringSpiral wound channelOcean EngineeringMembrane distillationMembrane distillation; Computational fluid dynamics; Temperature polarization; Spiral wound channel; SpacerComputational fluid dynamicsMembrane distillationSolar energyPollutionDesalinationSeparation processTemperature gradientTemperature polarizationCFD simulation membrane distillationComputational fluid dynamicbusinessWater Science and Technology
researchProduct

Preface to Special Issue of ChemSusChem on Perovskite Optoelectronics

2017

This Editorial introduces one of two companion Special Issues on "Halide Perovskites for Optoelectronics Applications" in ChemSusChem and Energy Technology following the ICMAT 2017 Conference in Singapore. More information on the other Special Issue can be found in the Editorial published in Energy Technology.

TitaniumEngineeringOptical Phenomenabusiness.industryGeneral Chemical EngineeringOxidesNanotechnologyCalcium CompoundsElectric Power SuppliesGeneral EnergySolar EnergyEnvironmental ChemistryOptoelectronicsGeneral Materials SciencePeriodicals as TopicbusinessChemSusChem
researchProduct

Extremophilic taxa predominate in a microbial community of photovoltaic panels in a tropical region

2021

ABSTRACT Photovoltaic panels can be colonized by a highly diverse microbial diversity, despite life-threatening conditions. Although they are distributed worldwide, the microorganisms living on their surfaces have never been profiled in tropical regions using 16S rRNA high-throughput sequencing and PICRUst metagenome prediction of functional content. In this work, we investigated photovoltaic panels from two cities in southeast Brazil, Sorocaba and Itatiba, using these bioinformatics approach. Results showed that, despite significant differences in microbial diversity (p < 0.001), the taxonomic profile was very similar for both photovoltaic panels, dominated mainly by Proteobacteria,…

Tropical Climatefood.ingredientbiologyConstruction MaterialsEcologyPhylumMicrobiotaCyanobacteriabiology.organism_classificationSphingomonasMicrobiologyExtremophilesfoodMicrobial population biologyMetagenomicsGenusRNA Ribosomal 16SHymenobacterSolar EnergyGeneticsMetagenomeDeinococcusProteobacteriaMolecular BiologyFEMS Microbiology Letters
researchProduct

Innovative Compact Solar Air Conditioner based on Fixed and Cooled Adsorption Beds and Wet Heat Exchangers

2014

Abstract In this work, a new all-in-one compact solar air conditioner concept is presented. The system is mainly based on a new DEC process which utilises fixed and cooled adsorption beds operating in a batch process and two wet heat exchangers. The proposed innovative adsorption bed is a fin and tube heat exchanger commonly used in the air conditioning sector, wherein the spaces between the fins are filled with silica gel grains. The main feature of this component is to allow simultaneous dehumidification and cooling of air. Furthermore, since the component hosts a considerable amount of adsorption material, solar energy can be efficiently stored in the desiccant media in terms of accumula…

Waste managementChemistrybusiness.industryPlate heat exchangerAdsorption fixed and cooled bedThermal energy storageSolar energySolar air conditioningEnergy(all)Air conditioningThermodynamic cycleHeat exchangerAll-in-one compact solar air conditionerbusinessProcess engineeringDECEvaporative coolerEnergy Procedia
researchProduct

Heat to electricity conversion by cold carrier emissive energy harvesters

2015

This paper suggests a method to convert heat to electricity by the use of devices called cold carrier emissive energy harvesters (cold carrier EEHs). The working principle of such converters is explained and theoretical power densities and efficiencies are calculated for ideal devices. Cold carrier EEHs are based on the same device structure as hot carrier solar cells, but works in an opposite way. Whereas a hot carrier solar cell receives net radiation from the sun and converts some of this radiative heat flow into electricity, a cold carrier EEH sustains a net outflux of radiation to the surroundings while converting some of the energy supplied to it into electricity. It is shown that the…

Work (thermodynamics)business.industryBand gapChemistryGeneral Physics and AstronomySolar energyEngineering physicslaw.inventionHeat fluxlawSolar cellEnergy transformationElectricityAtomic physicsbusinessPower density
researchProduct

Tackling Performance Challenges in Organic Photovoltaics: An Overview about Compatibilizers

2020

Organic Photovoltaics (OPVs) based on Bulk Heterojunction (BHJ) blends are a mature technology. Having started their intensive development two decades ago, their low cost, processability and flexibility rapidly funneled the interest of the scientific community, searching for new solutions to expand solar photovoltaics market and promote sustainable development. However, their robust implementation is hampered by some issues, concerning the choice of the donor/acceptor materials, the device thermal/photo-stability, and, last but not least, their morphology. Indeed, the morphological profile of BHJs has a strong impact over charge generation, collection, and recombination processes; control o…

additiveOrganic solar cellComputer sciencePharmaceutical ScienceMature technologymixing interfaceReviewcompatibilizersdonor/acceptor interfaceAnalytical Chemistrylcsh:QD241-441lcsh:Organic chemistryPhotovoltaicsDrug DiscoverySolar Energycompatibilizermorphology modulatorPhysical and Theoretical ChemistrySustainable developmentFlexibility (engineering)morphology modulatorsbusiness.industryOrganic Chemistrybulk heterojunctionEngineering physicsCharge generationModels ChemicalChemistry (miscellaneous)mixing interfacesMolecular Medicineadditivesorganic photovoltaicsbusiness
researchProduct

Potential of New and Renewable Energy in Merauke Regency as the Future Energy

2020

Electricity consumption in Merauke Regency increases every year in line with economic growth and population growth. Meanwhile, fossil energy reserves as fuel for power plants have decreased. To reduce dependence on fossil energy and offset the increase in electricity consumption it is necessary to develop alternative electrical energy sourced from renewable energy. Merauke Regency has great potential for renewable energy derived from biomass, solar, and wind. A study or analysis is needed to be able to estimate the energy potential that can be developed in an area. This study uses data collection techniques and analysis of the potential for renewable energy in Merauke Regency using RETScree…

biomass energyclean energylcsh:GE1-350Consumption (economics)Wind powerbusiness.industryNatural resource economicsElectric potential energyFossil fuelsolar energy0211 other engineering and technologiesBiomassretscreen expert02 engineering and technology010501 environmental sciencesSolar energy01 natural sciencesRenewable energywind energyEnvironmental science021108 energyElectricitybusinesslcsh:Environmental sciences0105 earth and related environmental sciencesE3S Web of Conferences
researchProduct

Application of solar energy to seawater desalination in a pilot system based on vacuum multi-effect membrane distillation

2020

Abstract The evaluation of a novel solar seawater desalination system implemented at the University of Almeria (Spain) is presented. It integrates a solar thermal field based on static collectors and a thermal desalination system based on the vacuum multi-effect membrane distillation technology. The distillation unit has a particular innovation to increase its thermal performance, using a seawater flow to condense the steam and preheat the feed. Experiments were made under different environmental conditions to assess the role of the thermal storage system for minimizing the effect of disturbances in solar radiation. Thermal energy could be delivered at a stable temperature to the distillati…

business.industry020209 energyMechanical EngineeringLow-temperature thermal desalination02 engineering and technologyBuilding and ConstructionManagement Monitoring Policy and LawThermal energy storageSolar energyMembrane distillationlaw.inventionGeneral Energy020401 chemical engineeringlaw0202 electrical engineering electronic engineering information engineeringEnvironmental scienceSeawater0204 chemical engineeringbusinessSolar desalinationProcess engineeringDistillationThermal energyApplied Energy
researchProduct