Search results for "NEWA"

showing 10 items of 2491 documents

A qualitative examination of performance and energy yield of photovoltaic modules in southern Norway

2010

Three different, commercially available photovoltaic modules have been monitored outdoors in the town of Grimstad, Norway. The present paper describes the experimental setup that was implemented, in particular details of the low-cost electronic loads. Results compare measured performance with manufacturer's data, and temperature measurements enable a comparison with performance at standard test condition temperature. Overall, the monocrystalline module performed best both regarding maximum efficiency and overall energy production, whereas the module based on triple junction amorphous silicon technology had the worst performance considering these criteria. The gross numbers of energy yield c…

Amorphous siliconEngineeringRenewable Energy Sustainability and the Environmentbusiness.industryPhotovoltaic systemElectrical engineeringSolar energyTemperature measurementAutomotive engineeringMonocrystalline siliconMaximum efficiencychemistry.chemical_compoundchemistryPerformance ratiobusinessEnergy (signal processing)Renewable Energy
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A procedure to evaluate the seven parameters of the two-diode model for photovoltaic modules

2019

Abstract The paper presents an analytical procedure to calculate the seven parameters of the two-diode model of photovoltaic (PV) panels for any value of the solar irradiance and cell temperature. Six parameters (the photocurrent, the diode reverse saturation currents, the quality factor of the first diode and the series and shunt resistances), are evaluated by solving the equations related to the properties of the main points of the current-voltage (I-V) characteristics. The further information, necessary to calculate the entire set of seven truly independent parameters, is based on two conditions that have to be simultaneously satisfied: 1) the exclusion of negative values of the model pa…

Amorphous siliconI-V characteristic020209 energySeven-parameter equivalent modelTwo-diode model02 engineering and technologyTopologySolar irradianceMonocrystalline siliconchemistry.chemical_compoundSolar energy0202 electrical engineering electronic engineering information engineering0601 history and archaeologyDiodeMathematicsPhotocurrent060102 archaeologyRenewable Energy Sustainability and the Environmentbusiness.industryPhotovoltaic systemPV panel06 humanities and the artsSolar energyCopper indium gallium selenide solar cellschemistrybusinessRenewable Energy
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Comparison between textured SnO2:F and Mo contacts with the p-type layer in p–i–n hydrogenate amorphous silicon solar cells by forward bias impedance…

2013

Abstract In this paper we compare the performance of the textured SnO2:F and Mo contacts with the p-type layer in p–i–n hydrogenate amorphous silicon (a-Si:H) solar cells. We use standard current–voltage (I–V) electrical characterization methods coupled with forward bias small signal impedance analysis. We show the efficacy of this technique to determine the effective carrier lifetime in photovoltaic cells. We show that such effective lifetimes are indeed directly connected to the respective dark diode saturation currents. We also find that the effective lifetime is constant with the temperature in the 0–70 °C range and it is significantly better for the solar cell with Mo diode contact. Th…

Amorphous siliconMaterials scienceRenewable Energy Sustainability and the EnvironmentOpen-circuit voltagebusiness.industryPhotovoltaic systemImpedance measurementCarrier lifetimelaw.inventionEffective carrier lifetimea-Si:H p–i–n solar cellchemistry.chemical_compoundchemistrylawSolar cellOptoelectronicsGeneral Materials SciencebusinessElectrical impedanceSaturation (magnetic)DiodeSolar Energy
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An accurate one-diode model suited to represent the current-voltage characteristics of crystalline and thin-film photovoltaic modules

2020

Abstract In this paper a new one-diode model, conceived in order to be used to represent the current-voltage curves of both crystalline and thin-film photovoltaic modules, is presented. The model parameters are calculated from the information contained in the datasheets issued by manufactures by means of simple iterative procedures that do not require the assumption of simplifying hypotheses. Some innovative relations describing the dependence of the parameters from the solar irradiance and cell temperature are adopted in order to permit the model to reliably simulate the electrical behaviour of photovoltaic devices operating in real conditions. The ability of the model to calculate the cur…

Amorphous siliconMaterials scienceSettore ING-IND/11 - Fisica Tecnica Ambientale060102 archaeologyMaximum power principleRenewable Energy Sustainability and the Environment020209 energyPhotovoltaic systemMechanical engineering06 humanities and the arts02 engineering and technologySolar irradianceCopper indium gallium selenide solar cellsPower (physics)Monocrystalline siliconThin-film photovoltaic modules One-diode model Five-parameter model I-V characteristics Solar energychemistry.chemical_compoundchemistry0202 electrical engineering electronic engineering information engineering0601 history and archaeologyDiode
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Effect of substrate improvement on optimising biogas yield from anaerobic digestion

2014

Masteroppgave i fornybar energi ENE 500 Universitetet i Agder 2014 The anaerobic digestion process involves the decomposition of the organic matter to yield biogas; gas that is mainly composed of methane and carbon dioxide with traces of some other gases. This process is used for different purposes including municipal waste treatment, wastewater treatment, fertilizer production, and farm wastes disposal as well as energy production. It is accomplished in three main stages; hydrolysis, acidogenesis and methanogenesis with each of the stages achieved by specific microorganisms that are active in limited ranges of operational and environmental conditions. These conditions are controlled to ach…

Anaerobic Digestion ; Biogas Yield ; Substrates ; Food wastes ; Fruit wastes ; Characterisation ; renewable energyENE500VDP::Technology: 500
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A Contribution to Environmental Protection Through the Valorisation of Kitchen Biowaste

2022

The worldwide interest in Renewable Energy Sources (RES) is gathering momentum. Anaerobic Digestion (AD) process is steadily growing, as more people are setting up bioreactors in order to produce biogas and digestate. AD process is the fermentation of solid biowaste in the absence of oxygen and is zero emission, i.e. it is CO2 neutral. The aim of this work is to test HomeBiogas 2.0, i.e. a revolutionary equipment that used the kitchen biowaste from the canteen of the agricultural institute of Marsala (Trapani, Italy). This equipment works as a continuous flow bioreactor: the waste is fed in one end, while biogas and digestate come out from the other. The process continuously took place at a…

Anaerobic DigestionDigestateBiogaRenewable Energy SourcesOrganic wasteCircular bioeconomy
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Emissions of Greenhouse Gases and Climate Politics in the Latvian Waste Sector

2015

According IPCC guidelines for determination of greenhouse gases in waste management (IPCC 2006) the quantity of greenhouse gases must be determined for the emissions of CO2, CH4, N2O for such treatment activities: disposal of solid waste, biological treatment of solid waste and incineration and open burning of waste. Presented report reviles the current situation of this field in Latvia and conclusions on its minimization actions. The data received from Latvian environmental data bases shows that the quantity of disposed unsorted municipal waste is rising and created sanitary landfill system with anaerobic digestion of bio mas (the content of it in the disposed waste reaches 40–50 %) is pro…

Anaerobic digestionMunicipal solid wasteLandfill gasWaste managementbusiness.industryGreenhouse gasFossil fuelEnvironmental engineeringBiomassEnvironmental sciencebusinessIncinerationRenewable energy
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Start-up and Operation of Laboratory-Scale Thermophilic Upflow Anaerobic Sludge Blanket Reactors Treating Vegetable Processing Wastewaters

1997

Thermophilic anaerobic treatment of hot vegetable processing wastewaters was studied in laboratory-scale UASB reactors at 55°C. The high-strength wastewater streams, deriving from steam peeling and blanching of carrot, potato and swede were used. The reactors were inoculated with mesophilic granular sludge. Stable thermophilic methanogenesis with about 60% COD removal was reached within 28 days. During the 134 day study period the loading rate was increased up to 24 kg COD m−3 day−1. High treatment efficiency of more than 90% COD removal and concomitant methane production of 7·3 m3 CH4 m−3 day−1 were achieved. The anaerobic process performance was not affected by the changes in the wastewat…

Anaerobic respirationWaste managementFood industryRenewable Energy Sustainability and the Environmentbusiness.industryMethanogenesisBlanchingGeneral Chemical EngineeringThermophileOrganic ChemistryBlanketPollutionInorganic ChemistryFuel TechnologyWastewaterEnvironmental sciencebusinessWaste Management and DisposalBiotechnologyMesophileJournal of Chemical Technology & Biotechnology
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Experimental alteration of granitic rocks: Implications for the evolution of geothermal brines in the Upper Rhine Graben, Germany

2020

Abstract Geothermal energy exploitation in the Upper Rhine Graben (URG) chiefly has targeted faults and fractures within or connected with the crystalline basement, where hot fluids of c. 200 °C circulate at depths of c. 5 km. Formation fluids of the crystalline basement are highly saline, NaCl-dominated brines, whereas shallow crystalline basement water ( The trace element concentrations of the leachates are hereby related to the composition and stability of minerals in the rocks and can be directly linked to the proposed and observed dissolution processes at the different temperatures. In experiments with pure water at 70 °C, representing the recharge or infiltration conditions, water-roc…

AnalcimeRenewable Energy Sustainability and the EnvironmentChemistry0211 other engineering and technologiesGeochemistryGeology02 engineering and technologyengineering.material010502 geochemistry & geophysicsGeotechnical Engineering and Engineering GeologyFeldspar01 natural sciencesvisual_artIllitevisual_art.visual_art_mediumengineeringKaolinitePlagioclase021108 energyQuartzDissolutionBiotite0105 earth and related environmental sciencesGeothermics
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Counter-Clock World: How Planning Backwards Helps in Moving Forward in Collapsing Environments

2021

Research on corporate decline and turnarounds as well as the strategic use of history have so far remained two separate research fields. We integrate these two fields with a thought experiment, proposing ways in which strategists can work with, and through time in managing and turning around declines. Our thought experiment involves two very different types of analogies: a textual one from Philip K. Dick’s science fiction novels, on the one hand, and a visual one from Einsteinian relativity science, on the other hand. Inspired and informed by these different conceptualizations of the past and time, we develop four forms of backward strategizing to successfully manage a struggling corporatio…

Analogical reasoningThought experimentScience fictionuses of the pastHistorylcsh:Management. Industrial managementmenneisyysTemporalityStrategy and ManagementTemporalityhistory and temporalityAnalogical reasoninghistorialcsh:BusinessCorporationOrganizational decline and collapsescience fictionSociologyorganizational decline and collapsestrategic renewal and corporate turnaround managementUses of the pastStrategic optionsPerspective (graphical)CognitionMythologyhistoriatietoisuusGeneral Business Management and Accountinganalogical reasoningStrategic renewal and corporate turnaround managementyrityksetEpistemologylaskusuhdannelcsh:HD28-70uudistaminenstrateginen suunnittelutulevaisuuslcsh:HF5001-6182relativismitieteiskirjallisuusM@n@gement
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