0000000000015110

AUTHOR

Davide Aloisio

0000-0003-2842-2283

showing 11 related works from this author

Analysis of the effects of climate change on the energy and environmental performance of a building with and without onsite generation from renewable…

2020

Climate Change is a priority, due to the large variety of implications and importance that it may cause in the next decades. In this context, the building sector is a significant contributor to greenhouse gas emissions. For this reason, buildings should be designed in such a way that they are responsible for fewer GHG emissions. In this context, the paper analyses the potential impact of climate change on the energy performances of buildings, with and without onsite generation from renewable energy, using a prototype building located in Messina (Italy) as case study. The analysis is based on Intergovernmental Panel on Climate Change RCP scenarios and the results confirm the already known ov…

Settore ING-IND/11 - Fisica Tecnica AmbientaleNatural resource economicsbusiness.industryEnergy (esotericism)Climate changeContext (language use)Energy storageRenewable energyEffects of global warmingGreenhouse gasRenewable energy systemEnvironmental sciencebusinessClimate change Energy storage Renewable energy systems
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Grid interaction and environmental impact of a net zero energy building

2020

Abstract The concept of Net Zero Energy Building (NZEB), as a grid-connected building that generates as much energy as it uses over a given period, has been developing through policies and research agendas during the last decade as a contribution towards the decarbonization of the building sector. However, since the most applicable and widely used renewable energy supply options are non-programmable, the large-scale NZEBs diffusion into the existing power grids can seriously affect their stability having a relapse on operation costs and environmental impacts. In this context, the study aims at performing the design of the energy systems to be used in the case-study through a wide numbers of…

Renewable energyEnergy storageNet Zero Energy BuildingsComputer science020209 energyEnergy Engineering and Power Technology02 engineering and technologyEnergy storage020401 chemical engineering0202 electrical engineering electronic engineering information engineeringNet Zero Energy Building0204 chemical engineeringFuel cellsSettore ING-IND/11 - Fisica Tecnica AmbientaleZero-energy buildingEnergy storage; Fuel cells; Grid interaction; Load matching; Net Zero Energy Buildings; Renewable energyGrid interactionRenewable Energy Sustainability and the Environmentbusiness.industryFuel cellPhotovoltaic systemEnvironmental economicsGridLoad matchingRenewable energyFuel TechnologyElectricity generationNuclear Energy and EngineeringbusinessBuilding envelopeNominal power (photovoltaic)Energy Conversion and Management
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Analysis of Load Match in Nearly Zero Energy Buildings

2018

The concept of load matching refers to the degree of agreement or disagreement of the on-site generation with the building load profiles: it can be increased and optimised with modifications on both the energy demand and generation. In this context, the paper presents the load match analysis of a case study: a modular housing construction (it has an area of 45 m 2 and S/V ratio equal to 2.75 m −1 ) built in Messina (Italy). Moreover, in order to optimize the design of the next test module to be built, a parametric analysis was performed considering different scenarios on the generation side, to explore the effectiveness of the solutions sets used in current design and plan different solutio…

Settore ING-IND/11 - Fisica Tecnica AmbientaleZero-energy buildingCover (telecommunications)Degree (graph theory)Computer sciencebusiness.industryLoad Matching nearly Zero Energy Buildings Energy storage renewable energy use in buildings fuel cellsContext (language use)Atmospheric modelModular designBase (topology)Automotive engineeringEnergy storagebusiness2018 IEEE 4th International Forum on Research and Technology for Society and Industry (RTSI)
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A Review of Key Performance Indicators for Building Flexibility Quantification to Support the Clean Energy Transition

2021

The transition to a sustainable society and a carbon-neutral economy by 2050 requires extensive deployment of renewable energy sources that, due to the aleatority and non-programmability of most of them, may seriously affect the stability of existing power grids. In this context, buildings are increasingly being seen as a potential source of energy flexibility for the power grid. In literature, key performance indicators, allowing different aspects of the load management, are used to investigate buildings’ energy flexibility. The paper reviews existing indicators developed in the context of theoretical, experimental and numerical studies on flexible buildings, outlining the current status a…

Flexibility (engineering)TechnologySettore ING-IND/11 - Fisica Tecnica AmbientaleControl and OptimizationRenewable Energy Sustainability and the Environmentbusiness.industryComputer scienceTEnergy Engineering and Power TechnologyContext (language use)key performance indicatorsGridRenewable energyElectric power systemLoad managementRisk analysis (engineering)Software deploymentenergy flexibilityPerformance indicatorElectrical and Electronic Engineeringenergy flexible buildingsbusinessEngineering (miscellaneous)building grid serviceEnergy (miscellaneous)Energies
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Implementation of a Management System for Prosumer Energy Storage Scheduling in Smart Grids

2020

Scheduling of energy storage systems of distributed generation is a key element for optimal renewable energy sources (RES) exploitation in smart grids, demand side response strategies implementation and prosumers interaction with Distribution System Operators (DSOs). In this context, this paper presents the implementation of a management system for energy storage scheduling, which allows taking appropriate account of the storage system behavior in real cases. To properly consider the real system operation, the employed battery model is modified, in order to include also the hysteresis phenomena in state of charge estimation in both charging and discharging operation. The validation of the p…

Battery (electricity)Computer sciencedistributed measurement system020209 energyDistributed computingScheduling (production processes)Context (language use)02 engineering and technologyoptimzationbattery management systemEnergy storagesizing0202 electrical engineering electronic engineering information engineeringschedulingdistribution systemdistributed generationbusiness.industryenergy storage020208 electrical & electronic engineeringdemand side responsesmart power gridsState of chargeSmart gridDistributed generationComputer data storagebusinessPSO.Settore ING-INF/07 - Misure Elettriche E Elettroniche
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Environmental Assessment of a Hybrid Energy System Supporting a Smart Polygeneration Micro-grid

2022

To support the global transition towards a climate-neutral economy by 2050, countries all over the world are implementing low carbon and energy effi ciency policies. This is leading to a rapid increase in the installations of distributed generation technologies. A hybrid system consisting of two or more energy sources could provide a more reliable supply of energy and mitigate storage require ments. In this context, this paper develops an environmental early analysis by the employment of a simplified Life Cycle Assessment approach. The above mentioned approach is used to investigate the environmental performances of the hybrid energy system of the smart polygeneration micro-grid of the Univ…

Settore ING-IND/11 - Fisica Tecnica AmbientaleEnvironmental impacts · Energy storage system · Renewable energy systems · Smart grid
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Computer Fluid Dynamics Assessment of an Active Ventilated Façade Integrating Distributed MPPT and Battery

2019

Ventilated Façades integrated with photovoltaic panels have become a popular way to improve both the thermal-physical performances of the existing built environment. The increased usage of not-programmable renewable energy sources implies the adoption of energy storage systems to mitigate the mismatch between the power generation and the building’s demand. Aiming at properly integrates a photovoltaic panel and a battery (Lithium based) as a module of an active ventilated façade, the prototype design has been carried out in terms of thermo-fluid dynamics performance. Based on experimental setup, a numerical study of flow through the air cavity of the active ventilated façade has been carried…

Battery (electricity)Computer fluid dynamicsSettore ING-IND/11 - Fisica Tecnica AmbientaleComputer scienceGeneral EngineeringFacadeBIPV battery ventilated façade CFDMaximum power point trackingAutomotive engineeringTECNICA ITALIANA-Italian Journal of Engineering Science
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Experimental and Computational Fluid Dynamic study of an active ventilated façade integrating battery and distributed MPPT

2019

Ventilated Façades integrating photovoltaic panels are a promising way to improve efficiency and the thermal-physical performances of buildings. Due the inherent intermittence of the non-programmable renewable energy sources, their increasing usage implies the use of energy storage systems to mitigate the mismatch between power generation and the buildings’ load demand. The main purpose of this paper is to investigate the thermo-fluid dynamic performances of a prototype integrating a photovoltaic cell and a battery as a module of an active ventilated façade. Based on an experimental setup, a numerical study in steady state conditions of flow through the air cavity of the module has been car…

Battery (electricity)Settore ING-IND/11 - Fisica Tecnica AmbientaleApplied MathematicsModeling and SimulationBIPVEnvironmental scienceBatteryFacadeCFDEngineering (miscellaneous)Ventilated façadeAutomotive engineeringMaximum power point tracking
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Electrochemical energy storage mitigating impact of electric vehicle on the electric grid: Two Italian case studies

2017

In the framework of the Italian R&D project i-Next two pilots plants were realized aiming at demonstrate benefits coming from the adoption of electrochemical energy storages (Lithium ion batteries and hydrogen) integrated with renewable energy sources. In the present study the preliminary results coming from the demo sites operations are reported paying attention to the impacts to the grid.

Engineeringbusiness.product_categorySettore ING-IND/11 - Fisica Tecnica AmbientaleHydrogenbusiness.industry020209 energyElectrical engineeringchemistry.chemical_element02 engineering and technologyElectric vehicleGridElectrochemical energy conversionEnergy storageAutomotive engineeringRenewable energyDistributd energy storagechemistryElectric vehicle0202 electrical engineering electronic engineering information engineeringLithiumbusinessElectrochemical energy storageChargingHydrogen
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Life cycle energy performances of a Net Zero Energy prefabricated building in Sicily

2017

The paper presents the energy performances in a life cycle perspective of a prefabricated building. The building was simulated in energy plus and validated on monitored data. To avoid the shifting of energy burdens from one life cycle stage to others, a Life Cycle Energy Assessment was performed. The primary energy use throughout the building's life cycle is 1,242 GJ. The materials production stage consumes the highest amount of primary energy (680 GJ) followed by the use stage (484 GJ), while the construction and end-of-life require respectively 1.7 % and the 4.6 % of total primary energy. (C) 2017 The Authors. Published by Elsevier Ltd. Peer-review under responsibility of the scientific c…

EngineeringSettore ING-IND/11 - Fisica Tecnica AmbientaleZero-energy buildingPrimary energyNet Zero Energy Buildingsbusiness.industry020209 energyEnvironmental engineering02 engineering and technology010501 environmental sciences01 natural sciencesEnergy assessmentModular BuildingsEnergy life-cycle approach0202 electrical engineering electronic engineering information engineeringNet Zero Energy BuildingbusinessCartographyEmbodied energyEmbodied energyEnergy (signal processing)0105 earth and related environmental sciences
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Towards an integrated design of renewable electricity generation and storage systems for NZEB use: A parametric analysis

2021

Abstract Although nearly zero energy buildings have attracted growing research attention, literature analysis shows that only a limited number of researches try to couple load match/grid interaction issues and environmental impacts in early design stages. The study proposes a novel multidisciplinary design approach that allows to integrate these two conflicting aspects aiming to find trade-offs. The proposed approach has been applied to a building case study, equipped with a photovoltaics system without energy storage. The results show that even though on yearly basis the energy use (5,290 kWhe) is largely overcome by the on-site energy generation (8069 kWhe), an oversized PV system alone m…

Renewable energyIntegrated designSettore ING-IND/11 - Fisica Tecnica AmbientaleEnergy storageZero-energy buildingLoad matching; Grid interaction; Environmental impacts; Energy storage; Renewable energyGrid interactionbusiness.industryComputer sciencePhotovoltaic systemContext (language use)Load matching Grid interaction Environmental impacts Energy storage Renewable energyBuilding and ConstructionEnvironmental impactsEnvironmental economicsGridLoad matchingEnergy storageRenewable energyElectricity generationMechanics of MaterialsArchitectureSafety Risk Reliability and QualitybusinessCivil and Structural EngineeringJournal of Building Engineering
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