Дисертації з теми "Tecnologie del recupero"
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PENNACCHIO, ROBERTO. "Tecnologie per il recupero di costruzioni in terra battuta in Piemonte." Doctoral thesis, Politecnico di Torino, 2015. http://hdl.handle.net/11583/2616409.
Повний текст джерелаMARZI, TANJA. "Impiego di nanotecnologie nei beni culturali per l'efficienza di sistemi manutentivi del costruito in legno: tecnologie innovative di recupero." Doctoral thesis, Politecnico di Torino, 2010. http://hdl.handle.net/11583/2497294.
Повний текст джерелаZapparrata, Sergio. "Tecnologie di separazione e recupero del compound di PVC da cavi elettrici a fine vita." Master's thesis, Alma Mater Studiorum - Università di Bologna, 2018. http://amslaurea.unibo.it/15904/.
Повний текст джерелаDini, Alessandro, and Enrico Maria Scarponi. "Progetto di riqualificazione del paesaggio urbano con tecnologie superficiali e sostenibili del quartiere Barca di Bologna." Master's thesis, Alma Mater Studiorum - Università di Bologna, 2021. http://amslaurea.unibo.it/23159/.
Повний текст джерелаCANNAS, LEONARDO GIUSEPPE FELICE. "Tecnologia del recupero dell’architettura tradizionale: gestire la coesistenza tra conservazione e innovazione." Doctoral thesis, Università degli Studi di Cagliari, 2015. http://hdl.handle.net/11584/266846.
Повний текст джерелаCAMPANA, CLAUDIO. "Recupero del calore di scarto di un motore a combustione interna mediante tecnologia ORC." Doctoral thesis, Università Politecnica delle Marche, 2017. http://hdl.handle.net/11566/245372.
Повний текст джерелаAbstract. The present thesis describes the development stages of an Organic Rankine Cycle (ORC) simulation model aimed at automotive applications. Considering that Internal Combustion Engines (ICEs) maximum efficiency stands at 35% for Spark Ignited (SI) engines and 45% for diesel, and 55% of the energy resulting from the combustion is wasted as heat, the coupling of an ICE to an ORC system is a viable solution for the recovery of a part of the amount of energy due to the exhaust gases produced by combustion, otherwise wasted. From mid-sized SI engine dynamometer testing results as input, has been developed a model that can provide all the engine energy data while running a generic standardized test cycle. For right power amount detection and for parameters’ characterization of the heat flows, it is supposed to install the engine on a compact multi-purpose vehicle (MPV), in such a way as to guarantee the necessary spaces for the housing of both the ORC facility and a potentially installed hybrid propulsion system. Also the space necessary for housing a potential natural gas storage facility has been taken into account, in order to get as close as possible to the goal of 95 grams of CO2 emission per kilometre, as stated in the 443/2009 European Directive for the year 2020. The ORC evaporator, i.e. the interface between the ICE and the recovery system, was designed by vehicle driving simulations results through the NEDC standardized test cycle. From the same simulations was also possible to determine the amount of recoverable energy while driving. The behaviour of the scroll-type expander used in the system was modelled by the data obtained from the experimental characterization of a small ORC plant prototype with R245fa as working fluid. The test bench setup has been described and the test results have been discussed.
Mazzoli, Cecilia. "Sistemi tecnologici innovativi di involucro per il recupero del patrimonio edilizio recente : l’edilizia scolastica nel comune di Bologna." Thesis, Paris Est, 2015. http://www.theses.fr/2015PEST1082/document.
Повний текст джерелаThe research is aimed at presenting a new integrated approach to aid operators and designers to manage the design process as a whole in refurbishment interventions of recent existing building stock, through the use of innovative technological envelope solutions. The study requires the acquisition of a selection of typological and constructive envelope solutions, as a starting point for the development of design solutions to be used for architectural renovation of schools built after the Second World War, in reinforced concrete and mostly prefabricated. The project identifies sustainable construction processes for the design of “active”, adaptive, efficient and dry assembled envelope components, in accordance with the performance requirements prescribed by current regulations. The purpose of the research is to manage the whole design process with the support of geometrical survey, connected to parametric programming software for modelling surfaces which can be adapted to the morphology of existing buildings. These computerized CAD-CAM tools are connected to CNC machines for “customized” industrialized production. To illustrate this innovative approach, two envelope solutions are proposed, according to the research paradigms and the principles of sustainability, meant as modularity, speed of setup, reversibility, recycling and reuse of materials with low environmental impact. In particular, the innovative solutions have in common the application of a technique based on the assembly of prefabricated components, the adoption of hexagonal patterns for the tessellation of the new surface of the façade, and the use of the same plastic and inorganic, recycled and sustainable, thermal insulation material (AAM-Alkali Activated Materials).The design solutions proposed are developed at the two sites involved in the joint
Mazzoli, Cecilia <1986>. "Sistemi tecnologici innovativi di involucro per il recupero del patrimonio edilizio recente. L'edilizia scolastica nel Comune di Bologna." Doctoral thesis, Alma Mater Studiorum - Università di Bologna, 2015. http://amsdottorato.unibo.it/6790/1/Mazzoli_Cecilia_tesi.pdf.
Повний текст джерелаThe research is aimed at presenting a new integrated approach to aid operators and designers to manage the design process as a whole in refurbishment interventions of recent existing building stock, through the use of innovative technological envelope solutions. The study requires the acquisition of a selection of typological and constructive envelope solutions, as a starting point for the development of design solutions to be used for architectural renovation of schools built after the Second World War, in reinforced concrete and mostly prefabricated. The project identifies sustainable construction processes for the design of “active”, adaptive, efficient and dry assembled envelope components, in accordance with the performance requirements prescribed by current regulations. The purpose of the research is to manage the whole design process with the support of geometrical survey, connected to parametric programming software for modelling surfaces which can be adapted to the morphology of existing buildings. These computerized CAD-CAM tools are connected to CNC machines for “customized” industrialized production. To illustrate this innovative approach, two envelope solutions are proposed, according to the research paradigms and the principles of sustainability, meant as modularity, speed of setup, reversibility, recycling and reuse of materials with low environmental impact. In particular, the innovative solutions have in common the application of a technique based on the assembly of prefabricated components, the adoption of hexagonal patterns for the tessellation of the new surface of the façade, and the use of the same plastic and inorganic, recycled and sustainable, thermal insulation material (AAM-Alkali Activated Materials). The design solutions proposed are developed at the two sites involved in the joint supervision of PhD thesis (University of Bologna, University of Paris-East). They are tackled according to the same scientific protocol: design of building system, mechanical and thermal analysis, constructive experimentation, test of installation techniques and performance requirements.
Le projet de doctorat vise à présenter une nouvelle approche intégrée en support des opérateurs dans la gestion du processus de conception d’interventions de rénovation énergétique et architecturale du patrimoine bâti récent, grâce à l’emploie de solutions technologiques d’enveloppe innovantes. La recherche se fonde sur la collection d’un répertoire sélectionné des solutions architecturales et constructives d’enveloppe, nécessaire pour constituer une base valide sur laquelle étudier des solutions technologiques novatrices pour la réhabilitation énergétique des écoles dans l’après-guerre, en béton armé, généralement préfabriquées. Le projet identifie des processus constructifs écodurables pour la conception des composants de façade “active”, adaptable et efficace, à assembler à sec, en conformité avec les exigences de performance requises par la réglementation actuelle. La recherche est finalisée à la gestion de l’ensemble du processus, soutenu par des systèmes de relevé géométrique, connectés aux logiciels de programmation paramétrique pour la modélisation des surfaces capables de s’adapter aux différentes morphologies du patrimoine existant. Ces outils informatisés CAOFAO sont reliés aux machines à contrôle numérique CNC pour la fabrication des éléments de façade “sur mesure”. À démonstration de l’approche innovante proposée, deux possibles solutions d’enveloppe sont présentées, dans la ligne droit des principes de durabilité, comprise comme modularité, rapidité de mise en oeuvre, réversibilité, récupération et réutilise des matériaux. En particulier, les solutions innovantes sont réunies par l’application d’une technique basée sur l’assemblage d’éléments préfabriqués, l’adoption d’un pavage hexagonal pour le dessin de la nouvelle surface d’enveloppe, et l’utilisation du même matériau isolant thermique, plastique et inorganique, recyclé, écodurable, à faible impact environnemental (AAM - Alkali Activated Materials). Les solutions proposées, développées dans les sièges de cotutelle (Université de Bologne, Université Paris-Est) sont envisagées selon un protocole scientifique qui prévoit: conception du système constructif, analyse mécanique et thermique, expérimentation constructive, validation des techniques de mise en oeuvre et des performances.
Mazzoli, Cecilia <1986>. "Sistemi tecnologici innovativi di involucro per il recupero del patrimonio edilizio recente. L'edilizia scolastica nel Comune di Bologna." Doctoral thesis, Alma Mater Studiorum - Università di Bologna, 2015. http://amsdottorato.unibo.it/6790/.
Повний текст джерелаThe research is aimed at presenting a new integrated approach to aid operators and designers to manage the design process as a whole in refurbishment interventions of recent existing building stock, through the use of innovative technological envelope solutions. The study requires the acquisition of a selection of typological and constructive envelope solutions, as a starting point for the development of design solutions to be used for architectural renovation of schools built after the Second World War, in reinforced concrete and mostly prefabricated. The project identifies sustainable construction processes for the design of “active”, adaptive, efficient and dry assembled envelope components, in accordance with the performance requirements prescribed by current regulations. The purpose of the research is to manage the whole design process with the support of geometrical survey, connected to parametric programming software for modelling surfaces which can be adapted to the morphology of existing buildings. These computerized CAD-CAM tools are connected to CNC machines for “customized” industrialized production. To illustrate this innovative approach, two envelope solutions are proposed, according to the research paradigms and the principles of sustainability, meant as modularity, speed of setup, reversibility, recycling and reuse of materials with low environmental impact. In particular, the innovative solutions have in common the application of a technique based on the assembly of prefabricated components, the adoption of hexagonal patterns for the tessellation of the new surface of the façade, and the use of the same plastic and inorganic, recycled and sustainable, thermal insulation material (AAM-Alkali Activated Materials). The design solutions proposed are developed at the two sites involved in the joint supervision of PhD thesis (University of Bologna, University of Paris-East). They are tackled according to the same scientific protocol: design of building system, mechanical and thermal analysis, constructive experimentation, test of installation techniques and performance requirements.
Le projet de doctorat vise à présenter une nouvelle approche intégrée en support des opérateurs dans la gestion du processus de conception d’interventions de rénovation énergétique et architecturale du patrimoine bâti récent, grâce à l’emploie de solutions technologiques d’enveloppe innovantes. La recherche se fonde sur la collection d’un répertoire sélectionné des solutions architecturales et constructives d’enveloppe, nécessaire pour constituer une base valide sur laquelle étudier des solutions technologiques novatrices pour la réhabilitation énergétique des écoles dans l’après-guerre, en béton armé, généralement préfabriquées. Le projet identifie des processus constructifs écodurables pour la conception des composants de façade “active”, adaptable et efficace, à assembler à sec, en conformité avec les exigences de performance requises par la réglementation actuelle. La recherche est finalisée à la gestion de l’ensemble du processus, soutenu par des systèmes de relevé géométrique, connectés aux logiciels de programmation paramétrique pour la modélisation des surfaces capables de s’adapter aux différentes morphologies du patrimoine existant. Ces outils informatisés CAOFAO sont reliés aux machines à contrôle numérique CNC pour la fabrication des éléments de façade “sur mesure”. À démonstration de l’approche innovante proposée, deux possibles solutions d’enveloppe sont présentées, dans la ligne droit des principes de durabilité, comprise comme modularité, rapidité de mise en oeuvre, réversibilité, récupération et réutilise des matériaux. En particulier, les solutions innovantes sont réunies par l’application d’une technique basée sur l’assemblage d’éléments préfabriqués, l’adoption d’un pavage hexagonal pour le dessin de la nouvelle surface d’enveloppe, et l’utilisation du même matériau isolant thermique, plastique et inorganique, recyclé, écodurable, à faible impact environnemental (AAM - Alkali Activated Materials). Les solutions proposées, développées dans les sièges de cotutelle (Université de Bologne, Université Paris-Est) sont envisagées selon un protocole scientifique qui prévoit: conception du système constructif, analyse mécanique et thermique, expérimentation constructive, validation des techniques de mise en oeuvre et des performances.
Zavatta, Giacomo. "Rifunzionalizzazione e recupero di una vecchia falegnameria. La nuova biblioteca del centro Spirituale di Marola (RE)." Master's thesis, Alma Mater Studiorum - Università di Bologna, 2022.
Знайти повний текст джерелаGabriele, Arianna. "Recupero e valorizzazione di un sottoprodotto dell'industria lattiero casearia mediante l'applicazione di ceppi selezionati di Yarrowia lipolytica." Master's thesis, Alma Mater Studiorum - Università di Bologna, 2021. http://amslaurea.unibo.it/23145/.
Повний текст джерелаBERGONZONI, MARCO. "VALORIZZAZIONE DEI PNEUMATICI FUORI USO (PFU) ATTRAVERSO IL RECUPERO E RICICLAGGIO PER LA PRODUZIONE DI PRODOTTI INNOVATIVI." Doctoral thesis, Università degli studi di Ferrara, 2010. http://hdl.handle.net/11392/2389282.
Повний текст джерелаPIAIA, Emanuele. "Recupero e nuove politiche abitative per il Social Housing. Strategie di riqualificazione degli insediamenti di edilizia sociale ad alta intensità abitativa realizzati nelle periferie urbane in Italia nella seconda metà del '900." Doctoral thesis, Università degli studi di Ferrara, 2009. http://hdl.handle.net/11392/2389201.
Повний текст джерелаVona, Antonio. "Elaborazione presso il servizio di ingegneria clinica e informatica medica di un algoritmo finalizzato alla definizione dei recuperi di apparecchiature medicali nell'ambito dei progetti di riqualificazione tecnologica." Master's thesis, Alma Mater Studiorum - Università di Bologna, 2016. http://amslaurea.unibo.it/10113/.
Повний текст джерелаMELONI, ALESSIA. "Progetto e costruzione eco-responsabile. Processi, Strategie e Strumenti verso la Valutazione Ambientale in Architettura." Doctoral thesis, Università degli Studi di Cagliari, 2014. http://hdl.handle.net/11584/266533.
Повний текст джерелаPANTINI, SARA. "Analysis and modelling of leachate and gas generation at landfill sites focused on mechanically-biologically treated waste." Doctoral thesis, Università degli Studi di Roma "Tor Vergata", 2013. http://hdl.handle.net/2108/203393.
Повний текст джерелаPonsot, Inès. "Glasses and Glass-Ceramic Components from Inorganic Waste and Novel Processing." Doctoral thesis, Università degli studi di Padova, 2015. http://hdl.handle.net/11577/3424636.
Повний текст джерелаGrazie alle regole e normative ambientali europee istituite, il riciclaggio dei rifiuti è diventato una problematica sempre più rilevante. Per gli impianti di produzione, in particolare quelli che producono rifiuti pericolosi, le spese connesse allo smaltimento sono drasticamente aumentate negli ultimi decenni. Nel lavoro proposto, vari rifiuti, pericolosi o no, vengono utilizzati per elaborare diverse composizioni di vetroceramiche. Si distinguono rottami di vetro della produzione di finestre, di contenitori farmaceutici e di tubi catodici. I rifiuti non vetrosi invece sono calce esausta da residui di sistemi di filtrazione di fumi, scorie metallurgiche da leghe ferrose e non e ceneri da inceneritori. E' presentata nel presente lavoro la ricerca di un metodo di trattamento ad alta temperatura (minima 800 ° C) efficace per stabilizzare chimicamente il prodotto finale, tramite i diversi processi di sinterizzazione diretta, sinter-cristallizzazione e vetrificazione. Sono stati studiati gli effetti di ogni rifiuto sulle proprietà meccaniche del prodotto finale, ma anche le nuove funzionalità ottenute attraverso le sinergie risultanti dalla loro miscela. Miscele calibrate hanno permesso di sviluppare prodotti interessanti per applicazioni edilizie moderne, come le piastrelle porose e pannelli leggeri destinati all’isolamento.
GIULIANELLI, STEFANO. "Effetto delle tecnologie e dell'esercizio sull'efficienza energetica dei sistemi ferroviari." Doctoral thesis, 2020. http://hdl.handle.net/11573/1362674.
Повний текст джерелаDe, Rosa Patrizio. "Recupero e innovazione dei sistemi insediativi produttivi. Tecnologia e progetto per i pastifici in Torre Annunziata (NA)." Tesi di dottorato, 2017. http://www.fedoa.unina.it/11535/1/De%20Rosa_Patrizio_29.pdf.
Повний текст джерелаGERMANA', Maria Luisa. "La qualità del recupero edilizio. Criteri per la formulazione di un metodo di verifica degli interventi attuati." Doctoral thesis, 1991. http://hdl.handle.net/10447/77170.
Повний текст джерелаNIGRO, SILVIA. "La riqualificazione integrata delle Periferie urbane d’Autore. Criteri e soluzioni tecnologico-ambientali per il recupero del patrimonio contemporaneo di interesse culturale. Una metodologia d’intervento." Doctoral thesis, 2021. http://hdl.handle.net/11573/1588336.
Повний текст джерела