984 resultados para effetto Gibbs serie Fourier Fejer
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Máster en Traducción Audiovisual, Subtitulado para Sordos y Audiodescripción
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Nella presente tesi viene esaminato il comportamento dinamico un edificio a struttura intelaiata in cemento armato, focalizzando l’attenzione sull’interferenza esercitata dai tamponamenti e dai tramezzi non portanti. Le murature non portanti sono modellate come bielle equivalenti, la cui rigidezza viene determinata adottando un modello elastico-lineare dell'edificio. Nelle analisi dinamiche, poi, si introduce la non-linearità dei materiali in maniera concentrata: mediante cerniere plastiche flessionali alle estremità di travi e pilastri, e mediante cerniere plastiche assiali nelle bielle equivalenti. Si mostra che, grazie alla presenza dei setti murari, aumentano notevolmente la rigidezza e la resistenza della struttura nella direzione orizzontale perpendicolare ai piani di orditura dei telai: questa direzione diviene più forte rispetto a quella che, considerando la sola disposizione dei telai e la quasi totale assenza di collegamenti fra gli stessi, dovrebbe invece presentarsi meno vulnerabile sotto le azioni orizzontali. Viene inoltre mostrato che, nel loro piano, i telai dell'edificio esaminato offrono buone prestazioni in termini di resistenza all’azione sismica.
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This research, carried out during the PhD in Materials Engineering, deals with the creation of layers, with different functionality, deposited on a ceramic substrate, to obtain photovoltaic cells for electricity production. The research activities are included in the project PRRIITT, Measure 4 (Development of Networks), Action A (Research and Technology Transfer Laboratories), Thematic reference 3 (Advanced materials applications development), co-financed by the Emilia Romagna Region, for the creation of CECERBENCH laboratory, which aims to develop "Tiles with a functionalised surface”. The innovation lies in the study of materials and in the development of technologies to achieve a "photovoltaic surface", directly in the tiles production process. The goal is to preserve the technical characteristics, and to make available new surfaces, exploiting renewable energy sources. The realization of Building Integrated PhotoVoltaic (BIPV) is nowadays a more and more spread tendency. The aims of the research are essentially linked to the need to diversify the actual ceramic tile production (which is strongly present in the Emilia Romagna Region ), and to provide a higher added value to the tiles. Solar energy production is the primary objective of the functionalization, and has a relevant ecological impact, taking into account the overwhelming global energy demand. The specific activities of the PhD were carried out according to the achievement of scientific and technological objectives of CECERBENCH laboratory, and involved the collaboration in design solutions, to obtain the cells directly on the tiles surface. The author has managed personally a part of the research project. Layers with different features were made: - Electrically conductive layers, directly on the ceramic tiles surface; - Layers to obtain the photovoltaic functionality; - Electrically insulating, protective layers (double function). For each layer, the most suitable materials have been selected. Among the technical application, the screen printing was used. This technique, widely used in ceramics, has many application areas, including the electronics and photovoltaic industries. It is an inexpensive technique, easy to use in industrial production lines. The screen printing technique was therefore studied in depth by theoretical considerations, and through the use of rheological measurements.