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  • 2014-2023
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  • ENEA Open Archive

  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Rizzo, A.; Salvi, S.; Ubaldini, A.; Nava, E.; +1 Authors

    L’Agenzia Nazionale per le Nuove Tecnologie, l’Energia e lo Sviluppo Economico Sostenibile (ENEA) e il Ministero degli Affari Esteri e Cooperazione Internazionale (MAECI) collaborano ai fini degli adempimenti previsti dalla legge 15 dicembre 1998, n. 484, così come modificata dalla L. 24 luglio 2003 n. 197, per la ratifica e l’esecuzione del Trattato per il Bando Totale degli Esperimenti Nucleari (CTBT, Comprehensive Nuclear-Test-Ban Treaty), con protocollo e annessi, adottato a New York dall’Assemblea Generale delle Nazioni Unite il 10 settembre 1996. Nell’ambito del Centro Nazionale Dati (NDC), il ruolo dell’ENEA consiste nel fornire supporto tecnico all’Autorità Nazionale (MAECI) nella verifica dell’applicazione del CTBT. In particolare, l’ENEA è responsabile del monitoraggio e analisi dei dati provenienti dal Sistema Internazionale di Monitoraggio (IMS) per il rilevamento di radionuclidi (particolato e gas nobili), che è una delle quattro tecnologie utilizzate per la verifica del Trattato e l’unica in grado di fornire elementi di certezza sul fatto che un test nucleare sia avvenuto o meno. Il MAECI e l’ENEA hanno collaborato su queste tematiche tramite apposite convenzioni, di cui l’attuale è entrata in vigore in data 1° gennaio 2023. Il presente documento rappresenta il secondo rapporto periodico del 2023 e descrive lo stato di avanzamento delle attività previste dalla convenzione nel periodo 1/4/2023 - 30/6/2023.

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ ENEA Open Archivearrow_drop_down
    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    ENEA Open Archive
    Other ORP type . 2023
    Data sources: ENEA Open Archive
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      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ ENEA Open Archivearrow_drop_down
      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
      ENEA Open Archive
      Other ORP type . 2023
      Data sources: ENEA Open Archive
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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Murra, D.; Aquilini, M.; Bollanti, S.; Di Lazzaro, P.; +4 Authors

    Le lunghezze d’onda comprese tra 200 e 280 nanometri, intervallo spettrale denominato UV-C, sono particolarmente adatte a debellare batteri e virus in quanto tale radiazione spezza i legami proteici e può danneggiare in modo irreversibile le catene del DNA/RNA. Sino a poco tempo fa, le sorgenti UV-C disponibili in commercio erano lampade a gas, basate tipicamente su deuterio, xenon, vapori di mercurio, o eccimeri. Queste lampade funzionano a tensioni piuttosto elevate, sono fragili e hanno tempi di accensione di diversi minuti prima di arrivare a regime ed emettere la potenza nominale. La disponibilità di LED (Light Emitting Diodes, dispositivi a stato solido) che emettono radiazione nell’intervallo dell’UV-C consente oggi di realizzare una “lampada”, basata su una matrice di tali sorgenti, che utilizza un alimentatore a bassa tensione, può essere disegnata in configurazioni geometriche adattabili ad ogni esigenza, si accende istantaneamente ed è meccanicamente molto robusta. In questo Rapporto Tecnico sono illustrati il progetto, la realizzazione e la caratterizzazione di una lampada a LED UV-C e del relativo alimentatore. È inoltre brevemente descritto un esperimento, a scopo fitosanitario, in cui tale lampada è stata utilizzata. Optical radiation with wavelengths between 200 and 280 nanometers, in the UV-C range, is particularly suitable for eradicating bacteria and viruses, as this radiation breaks protein bonds and can irreversibly damage DNA/RNA chains. Until recently, the commercial UV-C sources were gas lamps, typically based on deuterium, xenon, mercury vapor, or excimers. All of these lamps operate at quite high voltages, are fragile and require several minutes of warming up before working at full power. The availability of solid-state LEDs (Light Emitting Diodes) that emit radiation in the UV-C range allows a “lamp” to be made by assembling an array of such light sources, which uses a low-voltage power supply, can be designed in geometric configurations adaptable to any need, turns on/off instantly and is robust. This Technical Report illustrates the work done at ENEA Frascati on the design and assembly of a UVC LED lamp and of its power supply, its characterization and application to a phytosanitary experiment.

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ ENEA Open Archivearrow_drop_down
    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    ENEA Open Archive
    Other ORP type . 2023
    Data sources: ENEA Open Archive
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      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ ENEA Open Archivearrow_drop_down
      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
      ENEA Open Archive
      Other ORP type . 2023
      Data sources: ENEA Open Archive
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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Monteleone, F.; Anello, F.; Bommarito, C.; Piacentino, S.; +8 Authors

    Il presente rapporto descrive l’Osservatorio ENEA delle Madonie situato in località Piano Battaglia all’interno del Parco regionale delle Madonie nel territorio di Petralia Sottana (PA). L’Osservatorio è costituito da una stazione meteo, installata nel giugno 2016, con lo scopo di misurare i principali parametri meteorologici e da una cabina prefabbricata all’interno della quale è presente un sistema di prelievo di campioni di aria in flasks per la successiva determinazione, nei laboratori ENEA di Lampedusa, della concentrazione di alcuni gas-serra (CO2 e CH4) secondo standard internazionali. Il report, pur riportando in forma grafica i dati delle misure settimanali di anidride carbonica e metano a partire dal 2005, analizza i dati delle osservazioni meteorologiche in forma grafica e tabellare dal 1° luglio 2016 al 31 dicembre 2022. L’alta quota, la posizione geografica, l’assenza di contaminazioni locali e l’accuratezza delle misure rendono la stazione di “Madonie - Piano Battaglia”, un punto di eccellenza per il monitoraggio e lo studio dei complessi meccanismi legati al cambiamento climatico a scala regionale e globale; per tali specificità l’Organizzazione Meteorologica Mondiale (OMM) nel 2021 ha conferito all’Osservatorio ENEA delle Madonie il riconoscimento ufficiale di stazione regionale, rappresentativa per tutta l’area del Mediterraneo centrale, nell’ambito del Global Atmosphere Watch (GAW), la rete mondiale per lo studio del clima globale (https://gawsis.meteoswiss.ch/GAWSIS/#/search/station/stationReportDetails/ 0-380-0-MDN ). This report describes the ENEA Climate Observatory located in Piano Battaglia within the Madonie Regional Park in the territory of Petralia Sottana (PA). The Observatory consists of a weather station installed in June 2016 with the aim of measuring the main meteorological parameters and a prefabricated cabin hosting is a system for collecting air samples in flasks for the subsequent determination, in the ENEA laboratories of Lampedusa, of the concentration of some greenhouse gases (CO2 and CH4) according to international standards. The report, while reporting in graphical form the data of weekly measurements of carbon dioxide and methane starting from 2005, analyzes the meteorological parameters in graphical and tabular form from 1 July 2016 to 31 December 2022. The high altitude, the geographical position, the absence of local contamination and the accuracy of the measurements make the “Madonie-Piano Battaglia” station a point of excellence for monitoring and studying the complex mechanisms of climate change at regional and global scale; for these specificities, in 2021 the World Meteorological Organization (WMO) awarded the ENEA Madonie Observatory the official recognition of regional station, representative for the entire central Mediterranean area, within the Global Atmosphere Watch (GAW), the global network for the study of the global climate (https://gawsis.meteoswiss.ch/GAWSIS/#/search/station/stationReportDetails/0-380-0-MDN).

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ ENEA Open Archivearrow_drop_down
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    ENEA Open Archive
    Other ORP type . 2023
    Data sources: ENEA Open Archive
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      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ ENEA Open Archivearrow_drop_down
      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
      ENEA Open Archive
      Other ORP type . 2023
      Data sources: ENEA Open Archive
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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Vittoria, F. A.;

    Il servizio di valutazione della concentrazione di radon ENEA partecipa annualmente a diversi confronti interlaboratori, al fine di garantire la qualità della misura. La regolare partecipazione a tali prove interlaboratorio è uno dei requisiti minimi che i servizi di dosimetria in accordo a quanto richiesto dal D.Lgs. 101/2020. Nel presente rapporto tecnico vengono riportati i risultati ottenuti nei tre confronti interlaboratori che si sono conclusi nel corso del 2023, organizzati rispettivamente da UK Health Security Agency (Regno Unito), Bundesamt für Strahlenschutz (Germania), Politecnico di Milano (Italia).

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ ENEA Open Archivearrow_drop_down
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    ENEA Open Archive
    Other ORP type . 2023
    Data sources: ENEA Open Archive
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      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ ENEA Open Archivearrow_drop_down
      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
      ENEA Open Archive
      Other ORP type . 2023
      Data sources: ENEA Open Archive
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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Clemente, P.;

    Un approfondimento sui ponti ad archi murari, analizzando nello specifico il modello ad arco a conci lapidei con resistenza a compressione finita, con riferimento al suo comportamento in presenza di carichi viaggianti e in caso di azioni sismiche. Presa da: https://www.ingenio-web.it/articoli/valutazione-del-comportamento-sismico-dei-ponti-ad-arco-in-muratura/

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ ENEA Open Archivearrow_drop_down
    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    ENEA Open Archive
    Article . 2023
    Data sources: ENEA Open Archive
    ENEA Open Archive
    Article . Other ORP type . 2023
    Data sources: ENEA Open Archive
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      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ ENEA Open Archivearrow_drop_down
      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
      ENEA Open Archive
      Article . 2023
      Data sources: ENEA Open Archive
      ENEA Open Archive
      Article . Other ORP type . 2023
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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Flora, F.; Bollanti, S.; Di Lazzaro, P.; Mezi, L.; +1 Authors

    Le moderne tecnologie di acquisizione di immagini tridimensionali (3D) tramite droni, unite alla disponibilità di stampanti 3D commerciali accurate e di ampie dimensioni, aprono nuove frontiere nello sviluppo di plastici in scala che possono riprodurre fedelmente strutture architettoniche e paesaggi naturali. In questo lavoro si dimostra come il plastico di un sito archeologico, se illuminato con un simulatore solare, permette di ottenere una dettagliata analisi archeo-astronomica del sito stesso, difficilmente realizzabile in loco. Modern three-dimensional (3D) imaging technologies using drones, combined with the availability of accurate and large-scale commercial 3D printers, have opened new frontiers to the development of scaled models that can faithfully reproduce architectural structures and natural landscapes. In this paper, we demonstrate how any model of archaeological sites illuminated with a solar simulator allows for a detailed archaeo-astronomical analysis, which is difficult to achieve in situ.

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ ENEA Open Archivearrow_drop_down
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    ENEA Open Archive
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      ENEA Open Archive
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    Authors: Enea, D.; Basili, R.; Fontana, F.; Cignini, F.; +6 Authors

    Il presente Rapporto Tecnico propone le specifiche tecnico ed il manuale d’uso del Catasto Energetico Unico regionale degli edifici (CEU) e la sua contestualizzazione alla Regione Siciliana, individuata quale Regione pilota, nell’ottica di fornire alla Pubblica Amministrazione uno strumento integrato che consenta l’interoperabilità dei dati provenienti dal catasto degli attestati di prestazione energetica degli edifici (APE-R), dal catasto degli edifici virtuali (CEV) e dal catasto degli impianti termici (CIT-R). Il Catasto Energetico Unico regionale degli edifici (CEU) è una piattaforma informatica che consente di censire gli Attestati di Prestazione Energetica (APE) e gli impianti termici, dotati di libretto di impianto, afferenti ad una unità immobiliare catastalmente individuata. La piattaforma è organizzata in modo che, ad ogni unità immobiliare, dotata di identificativi catastali (codice Comune, foglio e particella), sia associato un dato vettoriale che ne riporta la geometria su cartografia interattiva, che rileva la presenza di APE, trasmessi al relativo catasto regionale e di Libretti di impianto, presenti sul catasto degli impianti termici. La piattaforma è accessibile da due tipologie di utenze, con diverse funzionalità permesse: - Autorità Competenti e/o Organismi Esterni, da queste appositamente delegati, e ispettori per la ricerca e consultazione dei libretti di impianto, dei rapporti di controllo dell’efficienza energetica e per l’inserimento dei rapporti di prova degli ispettori; - Amministrazione Regionale per la consultazione di tutte le banche dati e la gestione delle Autorità Competenti. This Technical Report proposes the technical specifications and the user manual of the Integrated Regional Energy Cadastre of buildings (CEU) and its contextualization to the Regione Siciliana, identified as the Italian pilot Region, with a view to providing the Public Administration with an integrated tool that allows the interoperability of data from the register of energy performance certificates of buildings (APE-R), from the register of virtual buildings (CEV) and from the register of thermal plants (CIT-R). CEU is an IT platform that collects, at the regional level, Energy Performance Certificates (APE) and data on heating and colling systems, equipped with plant booklet, related to a specific real estate unit, identified in the corresponding real estate registry. This platform is organized in such a way that each real estate unit, equipped with cadastral identifiers (municipality code, cadastral sheet and parcel), is associated with vector data which shows its geometry on interactive cartography, which detects the presence of APEs, just transmitted to the corresponding regional cadastre and plant booklets, registered in the thermal plants cadastre. The platform is accessible by two types of users, with different functions allowed: - Competent Authorities and/or External Organisms, specifically delegated by them, and inspectors, able to search and consult the plant booklets and the energy efficiency control reports and transmit the inspectors' test reports; - Regional Administration for the consultation of all databases and the management of the Competent Authorities.

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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Grandizio, F.; Montesano, G.; De Fazio, Piero; Sposato, C.;

    Questo lavoro presenta un’attività di ricerca industriale mirata all’individuazione di un’adeguata rete di ricarica elettrica finalizzata a garantire la circolazione di autovetture elettriche (ibride e non) a partire dalle aree comunali, per estendersi all’intero territorio regionale della Basilicata. È inoltre presentato uno stato dell’arte sulle infrastrutture di ricarica elettrica e sul parco degli autoveicoli elettrici su scala nazionale e regionale. In funzione dei target previsionali al 2030 definiti nel Piano Nazionale Infrastrutture per la Ricarica dei veicoli Elettrici (PNIRE) e sulla base delle stime dei veicoli elettrici del Piano Nazionale Integrato Energia e Clima (PNIEC) sia per la mobilità elettrica che per le infrastrutture di ricarica, sono stati poi individuati i criteri per un potenziamento della rete infrastrutturale di ricarica, necessario a coprire in modo più omogeneo le diverse aree geografiche nella regione Basilicata. This work presents an industrial research activity aimed at identifying an appropriate electric recharging network to guarantee the circulation of electric cars (hybrid and full electric) from the municipal areas to the entire regional territory of Basilicata. A state of the art on electric recharging infrastructures and the electric vehicles on a national and regional scale is presented. Based on the Italian targets for 2030 defined in the National Infrastructure Plan for the Recharging of Electric Vehicles (PNIRE) and based on electric vehicle forecasts in the Integrated National Energy and Climate Plan (PNIEC) for both electric mobility and recharging infrastructure, the criteria for upgrading the recharging infrastructure network necessary to cover the geographical areas in the Basilicata have been identified.

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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Battisti, P.;

    Vengono presentati i risultati delle misure di caratterizzazione radiologica delle parti residue relative all’ex-impianto CO.NU Magnox e connesse all’edificio R21, In specifico: condotta di adduzione degli effluenti liquidi dall’edificio R21 al serbatoio Magnox, contenuto riscontrato all’interno di tale condotta, terreno ad essa circostante ed asfalto sovrastante. Vengono inoltre esposti gli esiti della verifica attraverso i criteri di allontanabilità definiti nel doc IRP-P000-015 e condivisi da ISIN ai fini dell’allontanamento/riutilizzo dei materiali o del loro conferimento come rifiuti radioattivi. Si precisa che il documento non tratta la parte di condotta sottostante l’edificio R21 per la quale si procederà separatamente con operazioni specifiche ed emissione di documento dedicato, così come da indicazioni ISIN del 22/12/2022.

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    Authors: Penzo, S.;

    Nel 2019 e 2020 l’Istituto di Radioprotezione, tramite il Servizio Radon del Laboratorio di dosimetria, protezione da radionuclidi naturali e taratura (Bologna), ha realizzato una campagna di monitoraggio della concentrazione di radon in ambienti di vita e di lavoro in 4 Paesi Europei (Norvegia, Islanda, Italia e Svezia), nell’ambito del Progetto Europeo European Radon Measurements (EURA), a cui ha partecipato.

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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Rizzo, A.; Salvi, S.; Ubaldini, A.; Nava, E.; +1 Authors

    L’Agenzia Nazionale per le Nuove Tecnologie, l’Energia e lo Sviluppo Economico Sostenibile (ENEA) e il Ministero degli Affari Esteri e Cooperazione Internazionale (MAECI) collaborano ai fini degli adempimenti previsti dalla legge 15 dicembre 1998, n. 484, così come modificata dalla L. 24 luglio 2003 n. 197, per la ratifica e l’esecuzione del Trattato per il Bando Totale degli Esperimenti Nucleari (CTBT, Comprehensive Nuclear-Test-Ban Treaty), con protocollo e annessi, adottato a New York dall’Assemblea Generale delle Nazioni Unite il 10 settembre 1996. Nell’ambito del Centro Nazionale Dati (NDC), il ruolo dell’ENEA consiste nel fornire supporto tecnico all’Autorità Nazionale (MAECI) nella verifica dell’applicazione del CTBT. In particolare, l’ENEA è responsabile del monitoraggio e analisi dei dati provenienti dal Sistema Internazionale di Monitoraggio (IMS) per il rilevamento di radionuclidi (particolato e gas nobili), che è una delle quattro tecnologie utilizzate per la verifica del Trattato e l’unica in grado di fornire elementi di certezza sul fatto che un test nucleare sia avvenuto o meno. Il MAECI e l’ENEA hanno collaborato su queste tematiche tramite apposite convenzioni, di cui l’attuale è entrata in vigore in data 1° gennaio 2023. Il presente documento rappresenta il secondo rapporto periodico del 2023 e descrive lo stato di avanzamento delle attività previste dalla convenzione nel periodo 1/4/2023 - 30/6/2023.

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    Authors: Murra, D.; Aquilini, M.; Bollanti, S.; Di Lazzaro, P.; +4 Authors

    Le lunghezze d’onda comprese tra 200 e 280 nanometri, intervallo spettrale denominato UV-C, sono particolarmente adatte a debellare batteri e virus in quanto tale radiazione spezza i legami proteici e può danneggiare in modo irreversibile le catene del DNA/RNA. Sino a poco tempo fa, le sorgenti UV-C disponibili in commercio erano lampade a gas, basate tipicamente su deuterio, xenon, vapori di mercurio, o eccimeri. Queste lampade funzionano a tensioni piuttosto elevate, sono fragili e hanno tempi di accensione di diversi minuti prima di arrivare a regime ed emettere la potenza nominale. La disponibilità di LED (Light Emitting Diodes, dispositivi a stato solido) che emettono radiazione nell’intervallo dell’UV-C consente oggi di realizzare una “lampada”, basata su una matrice di tali sorgenti, che utilizza un alimentatore a bassa tensione, può essere disegnata in configurazioni geometriche adattabili ad ogni esigenza, si accende istantaneamente ed è meccanicamente molto robusta. In questo Rapporto Tecnico sono illustrati il progetto, la realizzazione e la caratterizzazione di una lampada a LED UV-C e del relativo alimentatore. È inoltre brevemente descritto un esperimento, a scopo fitosanitario, in cui tale lampada è stata utilizzata. Optical radiation with wavelengths between 200 and 280 nanometers, in the UV-C range, is particularly suitable for eradicating bacteria and viruses, as this radiation breaks protein bonds and can irreversibly damage DNA/RNA chains. Until recently, the commercial UV-C sources were gas lamps, typically based on deuterium, xenon, mercury vapor, or excimers. All of these lamps operate at quite high voltages, are fragile and require several minutes of warming up before working at full power. The availability of solid-state LEDs (Light Emitting Diodes) that emit radiation in the UV-C range allows a “lamp” to be made by assembling an array of such light sources, which uses a low-voltage power supply, can be designed in geometric configurations adaptable to any need, turns on/off instantly and is robust. This Technical Report illustrates the work done at ENEA Frascati on the design and assembly of a UVC LED lamp and of its power supply, its characterization and application to a phytosanitary experiment.

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    Authors: Monteleone, F.; Anello, F.; Bommarito, C.; Piacentino, S.; +8 Authors

    Il presente rapporto descrive l’Osservatorio ENEA delle Madonie situato in località Piano Battaglia all’interno del Parco regionale delle Madonie nel territorio di Petralia Sottana (PA). L’Osservatorio è costituito da una stazione meteo, installata nel giugno 2016, con lo scopo di misurare i principali parametri meteorologici e da una cabina prefabbricata all’interno della quale è presente un sistema di prelievo di campioni di aria in flasks per la successiva determinazione, nei laboratori ENEA di Lampedusa, della concentrazione di alcuni gas-serra (CO2 e CH4) secondo standard internazionali. Il report, pur riportando in forma grafica i dati delle misure settimanali di anidride carbonica e metano a partire dal 2005, analizza i dati delle osservazioni meteorologiche in forma grafica e tabellare dal 1° luglio 2016 al 31 dicembre 2022. L’alta quota, la posizione geografica, l’assenza di contaminazioni locali e l’accuratezza delle misure rendono la stazione di “Madonie - Piano Battaglia”, un punto di eccellenza per il monitoraggio e lo studio dei complessi meccanismi legati al cambiamento climatico a scala regionale e globale; per tali specificità l’Organizzazione Meteorologica Mondiale (OMM) nel 2021 ha conferito all’Osservatorio ENEA delle Madonie il riconoscimento ufficiale di stazione regionale, rappresentativa per tutta l’area del Mediterraneo centrale, nell’ambito del Global Atmosphere Watch (GAW), la rete mondiale per lo studio del clima globale (https://gawsis.meteoswiss.ch/GAWSIS/#/search/station/stationReportDetails/ 0-380-0-MDN ). This report describes the ENEA Climate Observatory located in Piano Battaglia within the Madonie Regional Park in the territory of Petralia Sottana (PA). The Observatory consists of a weather station installed in June 2016 with the aim of measuring the main meteorological parameters and a prefabricated cabin hosting is a system for collecting air samples in flasks for the subsequent determination, in the ENEA laboratories of Lampedusa, of the concentration of some greenhouse gases (CO2 and CH4) according to international standards. The report, while reporting in graphical form the data of weekly measurements of carbon dioxide and methane starting from 2005, analyzes the meteorological parameters in graphical and tabular form from 1 July 2016 to 31 December 2022. The high altitude, the geographical position, the absence of local contamination and the accuracy of the measurements make the “Madonie-Piano Battaglia” station a point of excellence for monitoring and studying the complex mechanisms of climate change at regional and global scale; for these specificities, in 2021 the World Meteorological Organization (WMO) awarded the ENEA Madonie Observatory the official recognition of regional station, representative for the entire central Mediterranean area, within the Global Atmosphere Watch (GAW), the global network for the study of the global climate (https://gawsis.meteoswiss.ch/GAWSIS/#/search/station/stationReportDetails/0-380-0-MDN).

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    ENEA Open Archive
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      ENEA Open Archive
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    Authors: Vittoria, F. A.;

    Il servizio di valutazione della concentrazione di radon ENEA partecipa annualmente a diversi confronti interlaboratori, al fine di garantire la qualità della misura. La regolare partecipazione a tali prove interlaboratorio è uno dei requisiti minimi che i servizi di dosimetria in accordo a quanto richiesto dal D.Lgs. 101/2020. Nel presente rapporto tecnico vengono riportati i risultati ottenuti nei tre confronti interlaboratori che si sono conclusi nel corso del 2023, organizzati rispettivamente da UK Health Security Agency (Regno Unito), Bundesamt für Strahlenschutz (Germania), Politecnico di Milano (Italia).

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    Authors: Clemente, P.;

    Un approfondimento sui ponti ad archi murari, analizzando nello specifico il modello ad arco a conci lapidei con resistenza a compressione finita, con riferimento al suo comportamento in presenza di carichi viaggianti e in caso di azioni sismiche. Presa da: https://www.ingenio-web.it/articoli/valutazione-del-comportamento-sismico-dei-ponti-ad-arco-in-muratura/

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    Authors: Flora, F.; Bollanti, S.; Di Lazzaro, P.; Mezi, L.; +1 Authors

    Le moderne tecnologie di acquisizione di immagini tridimensionali (3D) tramite droni, unite alla disponibilità di stampanti 3D commerciali accurate e di ampie dimensioni, aprono nuove frontiere nello sviluppo di plastici in scala che possono riprodurre fedelmente strutture architettoniche e paesaggi naturali. In questo lavoro si dimostra come il plastico di un sito archeologico, se illuminato con un simulatore solare, permette di ottenere una dettagliata analisi archeo-astronomica del sito stesso, difficilmente realizzabile in loco. Modern three-dimensional (3D) imaging technologies using drones, combined with the availability of accurate and large-scale commercial 3D printers, have opened new frontiers to the development of scaled models that can faithfully reproduce architectural structures and natural landscapes. In this paper, we demonstrate how any model of archaeological sites illuminated with a solar simulator allows for a detailed archaeo-astronomical analysis, which is difficult to achieve in situ.

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