Search results for "Energy Storage."

showing 10 items of 228 documents

Economic feasibility of a customer-side energy storage in the Italian electricity market

2015

Electricity prices show significant short-term variations during the day due to the need of balancing supply and demand in real time. Normally, customers are not exposed to these variations but pay a constant electricity price. In an attempt to reduce the volatility of the wholesale prices, several utilities are moving from conventional fixed-rate pricing schemes to new market-based models, where the electricity price can fluctuate during the day depending on the market conditions. Examples of time-dependent pricing schemes are Time-Of-Use (TOU) tariffs, where the electricity price can take two or three price levels during the day, or Real-Time Pricing (RTP) tariffs, where the energy price …

business.industryEnergy storageSupply and demandload shiftingSettore ING-IND/33 - Sistemi Elettrici Per L'Energiaeconomic feasibilityhourly electricity priceelectricity marketElectricity marketEnergy marketPrice levelElectricitybattery energy storage systembusinessElectricity retailingIndustrial organizationLimit price2015 IEEE 15th International Conference on Environment and Electrical Engineering (EEEIC)
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Predictive Model of Energy Consumption of a Home

2020

The usage of the renewable energy sources and electric vehicles is rising which might result in a problem with the energy grid stabilization. Some works state that buildings contribute to the overall energy consumption by 20–40% which makes them a great subject to study. Finding solutions for better energy management can have a significant impact on the energy sector. This work focuses on proposing a simplified model of a home considering main appliances, heating and cooling, a photovoltaic system, an electric vehicle and weather and solar irradiance forecasts. The model is created in MATLAB as a simulation script with defined parameters. It uses a 5 day weather forecast to predict energy d…

business.product_categoryElectricity generationEnergy managementComputer sciencebusiness.industryPhotovoltaic systemElectric vehicleGrid energy storageEnergy consumptionbusinessIndustrial engineeringEnergy (signal processing)Renewable energy
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Polymer Selection and Cell Design for Electric-Vehicle Supercapacitors

2000

Supercapacitors are devices for applications requiring high operating power levels, such as secondary power sources in electric vehicles (EVs) to provide peak power for acceleration and hill climbing. While electronically conducting polymers yield different redox supercapacitor configurations, devices with the n-doped polymer as the negative electrode and the p-doped polymer as the positive one are the most promising for EV applications. Indeed, this type of supercapacitor has a high operating potential, is able to deliver all the doping charge and, when charged, has both electrodes in the conducting (p- and n-doped) states. This study reports selection criteria for polymer materials and ce…

chemistry.chemical_classificationElectrolytic capacitorSupercapacitorConductive polymerMaterials sciencebusiness.product_categoryRenewable Energy Sustainability and the Environmentbusiness.industryElectrical engineeringPolymerCondensed Matter PhysicsEnergy storageSurfaces Coatings and FilmsElectronic Optical and Magnetic Materialslaw.inventionCapacitorchemistrylawElectrodeElectric vehicleMaterials ChemistryElectrochemistryOptoelectronicsbusinessJournal of The Electrochemical Society
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Hydrothermal liquefaction of waste biomass in stirred reactors: One step forward to the integral valorization of municipal sludge

2020

Abstract Hydrothermal liquefaction (HTL) of municipal sludge (MS) was performed at 350 °C for 30 min (subcritical water) and at 400 °C for 0 min (supercritical water) at fixed kinetic severity (LogR0 = 8.9) in static and stirred batch reactors to study the effect of the flow regime on the energy recovery (ER) of the process and on the quality of the products. With adopted experimental procedures it was possible to reduce to less than 10% the yield of lost organic compounds, termed volatiles (VT), and to collect and quantify a liquid hydrocarbon fraction (HC) separated from the biocrude (BC). The highest value of the HC yield, 25% w/w, was obtained in supercritical conditions. The C content …

chemistry.chemical_classificationEnergy recovery020209 energyMechanical EngineeringBiomassFraction (chemistry)02 engineering and technologyBuilding and ConstructionPulp and paper industryPollutionIndustrial and Manufacturing EngineeringSupercritical fluidHydrothermal liquefactionGeneral EnergyHydrocarbon020401 chemical engineeringchemistryBiofuelYield (chemistry)0202 electrical engineering electronic engineering information engineering0204 chemical engineeringElectrical and Electronic EngineeringBiofuelEnergy recovery Energy storage Hydrothermal liquefaction Municipal sludge Waste biomassCivil and Structural Engineering
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Hybrid Energy Storage Modeling And Innovative Solutions For Energy Storage Management Systems

2022

La presente tesi riguarda la modellazione di diverse fonti di accumulo di energia elettrica, in particolare batterie e supercondensatori (SC), e di nuove configurazioni di metodi di gestione di sistemi di accumulo di energia ibridi . Il crescente bisogno di domanda di energia e il desiderio di raggiungere uno sviluppo sostenibile, si riflettono nell'uso di Generatori Distribuiti (DG) basati sulle Fonti energetiche Rinnovabili (FER). L'uso di un controllo di supervisione intelligente e il raggruppamento locale della domanda e della generazione possono portare a notevoli miglioramenti nell'efficienza, affidabilità e resilienza del sistema elettrico. Il problema principale della DG basata sull…

energy managementenergy storagebatterieconvertitori di potenzapower conversionbatterygestione dell'energiasupercondensatorisupercapacitorSettore ING-IND/32 - Convertitori Macchine E Azionamenti Elettricisistemi di accumulo di energia
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Conjugation with carbon nanotubes improves the performance of mesoporous silicon as Li-ion battery anode

2020

Carbon nanotubes can be utilized in several ways to enhance the performance of silicon-based anodes. In the present work, thermally carbonized mesoporous silicon (TCPSi) microparticles and single-walled carbon nanotubes (CNTs) are conjugated to create a hybrid material that performs as the Li-ion battery anode better than the physical mixture of TCPSi and CNTs. It is found out that the way the conjugation is done has an essential role in the performance of the anode. The conjugation should be made between negatively charged TCPSi and positively charged CNTs. Based on the electrochemical experiments it is concluded that the positive charges, i.e., excess amine groups of the hybrid material i…

energy science and technologyEnergy storageElectronic properties and materialspiibatteriesenergy storageEnergy science and technologyelektroditlcsh:RlitiumioniakutCarbon nanotubes and fullereneslcsh:MedicineArticleBatteriescarbon nanotubes and fullereneslcsh:Qelectronic properties and materialsnanoputketlcsh:SciencekomposiititScientific Reports
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Proper sizing of energy storage for grid connected photovoltaic system

2014

Masteroppgave i fornybar energi ENE 500 Universitetet i Agder 2014 The requirement of an energy storage to a grid connected PV system, is highly desirable in cases like power outages. Another importance is to reduce the peak time electricity buying from the utility grid and discharging the battery stored energy to the load. This project investigates the optimum dimensioning of a battery energy storage in a grid connected Photovoltaic system, for the customers who purchase and sell the electricity to the utility grid. The aim was to provide an optimal method that helps electricity customers equipped with PV systems, in making decisions to install economically sized battery energy storage. Th…

energy storage ; grids ; photovoltaic systems ; photovoltaicsENE500VDP::Technology: 500
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Przegląd metod magazynowania energii w kontekście rozwoju technologii OZE

2017

Rozwój technologii magazynowania energii jest kluczowy dla rozwoju wykorzystania odnawialnych źródeł energii. Wynika to przede wszystkim z nierównomiernej w czasie podaży tej energii, której produkcja dla większości technologii związana jest z warunkami atmosferycznymi. Poza nielicznymi wyjątkami, czas w którym są najlepsze warunki do pozyskania energii odnawialnej nie pokrywa się z czasem, kiedy zapotrzebowanie na energię jest największe. Fluktuacje zarówno podaży tej energii jak i zapotrzebowania na nią mogą mieć charakter krótko, średnio lub długookresowy. Jest to duże ograniczenie, które można w pewnym zakresie można rozwiązać poprzez magazynowanie energii, w różnych jej formach: energi…

energy storagemateriały sypkiebulk materialsTESmagazynowanie energiimagazynowanie ciepła
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Thermal energy storage in granular deposits

2017

Energy storage technology is crucial for the development of the use of renewable energy sources. This is a substantial constraint, however it can, to some extent, be solved by storing energy in its various forms: electrical, mechanical, chemical and thermal. This article presents the results of research in thermal properties of granular deposits. Correlation between temperature changes in the stores over a period of time and their physical properties has been studied. The results of the research have practical application in designing thermal stores based on bulk materials and ground deposits. Furthermore, the research results are significant for regeneration of the lower ground sources for…

lcsh:GE1-350Chemistrybusiness.industry020209 energyMechanical engineering02 engineering and technologyThermal energy storageEnergy storageRenewable energy020401 chemical engineeringThermalHeat exchanger0202 electrical engineering electronic engineering information engineering0204 chemical engineeringbusinessProcess engineeringlcsh:Environmental sciencesEnergy (signal processing)E3S Web of Conferences
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The possibilities of energy storage in bulk materials

2018

The increased demand for energy from renewable sources entails the development of storage systems. The purpose of these systems is to supply energy on demand during periods which may not be concurrent with the time of the most efficient production of this energy. Various systems are being developed for storing energy in various forms and over various lengths of time.This paper presents selected projects and the results of studies into thermal energy storage. The results of the present author's own research into the transport of thermal energy in granular beds are also presented. The curves of temperature distribution have been determined; they are essential for the design of the thermal sto…

lcsh:GE1-350business.industryOn demandEnvironmental scienceEnergy supplyProcess engineeringbusinessThermal energy storagelcsh:Environmental sciencesEnergy (signal processing)Thermal energyEnergy storageRenewable energyE3S Web of Conferences
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