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  • 1. Borgogni, Francesco
    et al.
    Calvano, Michele
    Moscati, Annika
    Sapienza University of Rome.
    The dome of Saint Yves at La Sapienza in Rome: Digital modelling as method of knowledge2012Inngår i: Proceedings of the First International Congress Domes in the World, Florence, March 19 - 23, 2012, Florence: TecnoConference , 2012Konferansepaper (Annet vitenskapelig)
    Abstract [en]

    The work presented here was developed as a major training activity of the Seminar of Urban Survey by the students of the XXVIII and XXIV cycle doctorate in Science and the Representation of Survey. Survey is the main tool to understand an architectural work and the several features that rule its spatial concept. The architectural complex of Saint Yves at La Sapienza, original place where was based the University of Rome, is full of interesting information to be learned. The building was designed by Francesco Borromini and implemented in the second half of XVII Century: its shape is characterized by a strong centralization, which is the result of the plan design. The plan of the building was born from the composition and interaction of different geometrical shapes, like the circle, the triangle and the hexagon. These shapes are all pivoting around a strong center but creating a complex weave of lines and curves around it. Centrality is enhanced by the giant coupled responds forming six huge pillars joined by the projecting cornice, directly leaned on the Corinthian capitals of the aforementioned columns. The last fillet of the cornice highlights in silhouette the strong intention of the designer, expressed by the multi-curved shape at the base of the dome. Finally we reach the sky at the top of the dome, where shapes melt in the light coming out of the big windows: here moldings are the only elements which keep together the big vertical columns rising from the ground and disappearing in the shadow. The base of the dome gets together the complexity of architectural elements below, reducing it, as the eye rises to the top, to the simplicity of the circle at the base of the skylight turret. This spatial concept, which is like inviting to look up to the “starry sky of the dome”, expresses itself also outside the building through the geometrical concept of the skylight turret. The turret is set up on a circle at the base and rises up following an helicoidal trend, being decorated continuously from the base to the flamed crown at the top. The completion of the turret is represented by a spherical element, probably symbolizing the Globe, suspended above the flames, which are symbolizing the Christian Charity operated by Saint Yves and embodied by the Pope. The entire complex is crowned by the more explicit symbol of the Christian tradition which is placed next to the sky: the Cross. In the architectural complex of Saint Yves, every decoration lives on its own, but its position respect to the whole building enhances its symbolic value, more than the simple decorative one. The virtual reconstruction, both in a bi-dimensional and tri-dimensional way, of the building of Saint Yves at La Sapienza, has been carried out only through a complex integrated survey methodology, made with long-range 3D laser scanners and high-resolution cameras. After some preliminary elaborations of the data resulting from the survey, like organizing and selecting all the points scanned, it has been possible starting the effective virtual reconstruction. Through the analysis of survey data and the selection of appropriate projection planes, horizontal and vertical sections of the model have been extracted to better understand the geometrical concept. This allowed a critical interpretation of the architectural complex, understanding even the most complex shapes and reducing them to simpler ones. From a practical point of view, the tri-dimensional reconstruction has been executed through an hybrid process, melting the geometrical precision of NURBS surfaces, concerning the architectural aspects, and the adaptability of polygonal modeling applied to the organic shapes of the decorations. This methodology allowed to deeply understand the articulated geometrical solutions designed by Borromini, representing a base for further analysis and studies on these issues.

  • 2.
    Ippoliti, Elena
    et al.
    Sapienza University of Rome.
    De Luca, Livio
    UMR 3495 (CNRS/MCC) MAP - Modèles et simulations pour l’Architecture et le Patrimoine.
    Meschini, Alessandra
    University of Camerino.
    Moscati, Annika
    Sapienza University of Rome.
    Rossi, Daniele
    Univeristy of Camerino.
    Shedding light on the city: discovering, appreciating and sharing Cultural Heritage using 3D Visual Technology2012Inngår i: 18th International Conference on Virtual Systems and Multimedia Virtual Systems in the Information Society, Milan, 2-5 September, 2012., IEEE conference proceedings, 2012, s. 141-148Konferansepaper (Fagfellevurdert)
  • 3.
    Ippoliti, Elena
    et al.
    La Sapienza University of Rome.
    Meschini, Alessandra
    Univerity of Camerino.
    Moscati, Annika
    Architettura delle informazioni e Architrttura informatica sul caso studio di Appignano del Tronto2008Inngår i: DISEGNARECON, ISSN 1828-5961Artikkel i tidsskrift (Annet vitenskapelig)
  • 4.
    Ippoliti, Elena
    et al.
    Sapienza University of Rome.
    Meschini, Alessandra
    University of Camerino.
    Moscati, Annika
    Sapienza University of Rome.
    Rossi, Daniele
    Univerity of Camerino.
    Interfacce e tecnologie visual 3D per conoscere, condividere e valorizzare il patrimonio culturale 2012Inngår i: DISEGNARECON, ISSN 1828-5961, s. 45-54Artikkel i tidsskrift (Annet vitenskapelig)
  • 5.
    Ippoliti, Elena
    et al.
    Sapienza University of Rome.
    Meschini, Alessandra
    University of Camerino.
    Moscati, Annika
    Sapienza University of Rome.
    Rossi, Daniele
    University of Camerino.
    Modelli informativi integrati per conoscere, valorizzare e condividere il patrimonio urbano: tra interfacce 3D e tecnologie visual 3D2013Inngår i: Modelli complessi per il patrimonio architettonico-urbano , Rome: Gangemi Editore , 2013Kapittel i bok, del av antologi (Annet vitenskapelig)
  • 6.
    Ippoliti, Elena
    et al.
    Sapienza University of Rome.
    Meschini, Alessandra
    University of Camerino.
    Rossi, Daniele
    University of Camerino.
    Moscati, Annika
    Sapienza University of Rome.
    An approach towards the construction of a Digital Atlas for the documentation of cloister and courtyards in Ascoli Piceno2011Inngår i: International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, ISPRS, Trento, 2-4 March, 2011., Trento, Italy, 2011, s. 231-238Konferansepaper (Fagfellevurdert)
    Abstract [en]

    The following article aims to present the results of a research experience that defines a geographic information system oriented at the architecture of closed areas of cloisters and courtyards of the historic center of Ascoli Piceno. This experimentation is part of the scenery of documentation's activities for the management and the enhancement of urban environmental improvements through the use of integrated technologies closed and open source. Therefore the main object of the analysis was the architectural one, in its different, articulated and individual features, but always considered in relation to the same geographical location, in this case the urban space, consequently focused not only on the object itself, but also on the relationship between this and any other similar ones. In this sense, the tested geographic information system is intentionally hybrid. We wanted to check the possibility of binding different shape and nature data to the "map" by structuring in a well organized manner different information – drawings, videos, photos, 3D, etc.. – in order to realize a GIS that would allow to analyze the architecture of cloisters and courtyards both in its relations to the urban context and in its specific spatial qualities.

  • 7.
    Ippoliti, Elena
    et al.
    Sapienza University of Rome.
    Moscati, Annika
    Sapienza University of Rome.
    Interfacce di accesso alle informazioni: tra 3D, 3D-GIS e Web GIS2010Inngår i: Sistemi informativi integrati per la tutela, la conservazione e la valorizzazione del patrimonio architettonico e urbano / [ed] S. Brusaporci, Rome: Gangemi Editore , 2010Kapittel i bok, del av antologi (Annet vitenskapelig)
  • 8.
    Ippoliti, Elena
    et al.
    Sapienza University of Rome.
    Moscati, Annika
    Sapienza University of Rome.
    New means of knowledge: 3D, 3D-GIS and Web GIS2010Inngår i: XIII International Congress of Architectural Graphic Expression, Valencia, May 27th to 29th, 2010., Valencia, Spain, 2010Konferansepaper (Fagfellevurdert)
  • 9.
    Ippoliti, Elena
    et al.
    Sapienza University of Rome.
    Moscati, Annika
    Rossi Brunori, Argeo
    Un’ ipotesi per l'uso delle risorse ambientali2008Inngår i: Paysage TopscapeArtikkel i tidsskrift (Fagfellevurdert)
  • 10. Moscati, Annika
    Architettura delle informazioni e dati geografici 2D: database e GIS2010Inngår i: Sistemi informativi integrati per la tutela, la conservazione e la valorizzazione del patrimonio architettonico e urbano / [ed] S. Brusaporci, Rome: Gangemi Editore , 2010Kapittel i bok, del av antologi (Annet vitenskapelig)
  • 11.
    Moscati, Annika
    Sapienza University of Rome.
    Architettura delle informazioni: il database2010Inngår i: Sistemi informativi integrati per la tutela, la conservazione e la valorizzazione del patrimonio architettonico e urbano / [ed] S. Brusaporci, Rome: Gangemi Editore , 2010Kapittel i bok, del av antologi (Annet vitenskapelig)
  • 12.
    Moscati, Annika
    Sapienza University of Rome.
    Integrated Information Systems2012Inngår i: DISEGNARECON, ISSN 1828-5961, Vol. 5, s. 249-254Artikkel i tidsskrift (Annet vitenskapelig)
    Abstract [it]

    Attualmente nel campo della gestione e valorizzazione del patrimonio culturale due sono i sistemi informativi che offrono strumenti significanti: GIS (Sistemi Informativi Geografici) e AIS (Sistemi Informativi Architettonici). Il primo gestisce dati a scala urbana e territoriale, il secondo amministra dati a scala architettonica. Per una completa gestione e analisi del patrimonio entrambe le scale (territoriale-urbana e architettonica) sono essenziali. Ma nonostante i numerosi tentativi fatti negli ultimi anni, attualmente nessun sistema è realmente capace di una loro gestione simultanea. Questo studio mira a creare un sistema ibrido, una nuova interfaccia che consenta la contemporanea visione e gestione di AIS e GIS e che presenti una finestra per effettuare analisi spaziali. Gli obiettivi finali sono stati: risolvere il passaggio di scala (dall’analisi alla sintesi); consentire analisi spaziali e creare un sistema accessibile tramite internet.

  • 13.
    Moscati, Annika
    Sapienza University of Rome.
    La pratica della prospettiva – gli strumenti per costruire la prospettiva2012Inngår i: Attualità della geometria descrittiva / [ed] Laura Carlevaris, Laura De Carlo, Riccardo Migliari, Rome: Gangemi , 2012, s. 457-466Kapittel i bok, del av antologi (Annet vitenskapelig)
  • 14. Moscati, Annika
    Sistemi informativi integrati per la valorizzazione del patrimonio urbano-architettonico, tra 3D GIS, AIS e Web2012Doktoravhandling, monografi (Annet vitenskapelig)
    Abstract [en]

    Currently in the field of management, enhancement, territory and cultural heritage analysis, two types of information systems offer significant tools: GIS (Geographic Information System) and AIS (Architectural Information System). The first one manages urban and territorial scale data, the second one administers architectural scale data. For a complete management and analysis of the built heritage, both scales (territorial-urban and architectural) are essential, but despite numerous attempts made in recent years, currently no system is really able to manage them simultaneously. After a thorough analysis of both types of systems, and a careful study of the state of the art, this research aims to create a hybrid system, which is a new interface that allows to simultaneously view an AIS, a GIS and a window for the management of spatial queries. Considering the deep differences between the two systems, the ultimate goal is to integrate them by proposing a new hybrid system (HS) to solve the problem of scale change (from analysis to synthesis) using a new data structure and a new interface.

  • 15.
    Moscati, Annika
    et al.
    Högskolan i Jönköping, Tekniska Högskolan, JTH, Byggnadsteknik och belysningsvetenskap.
    Engström, Susanne
    Department of Civil, Environmental and Natural Resources Engineering, Luleå University of Technology, Luleå, Sweden.
    Digitalisation and industrialisation: Exploration of the current and future challenges in the Swedish built environment sector2019Inngår i: Association of Researchers in Construction Management, ARCOM 2019 - Proceedings of the 35th Annual Conference / [ed] C. Gorse & C. J. Neilson, Association of Researchers in Construction Management (ARCOM), 2019, s. 386-395Konferansepaper (Fagfellevurdert)
    Abstract [en]

    Digitalization and industrialization are central topics in the Swedish government agenda and digitalization and industrialization of the built environment sector, as the largest single sector in Sweden, are with reason seen as crucial goals. In the Swedish strategic innovation programme Smart Built Environment (SBE), digitalization and industrialization are addressed and explored as a means to reduce environmental impact, planning and construction time, total construction costs, and to enable for new business logic in the built environment sector. One of the projects within SBE aims to measure effects and consequences of digitalization and industrialization to support the long-Term assessment of the progress towards the programme goals. In this paper is presented the main findings from the first measurement, addressing a sample of SBE partners and their focus on digitalization and industrialization and what they perceive as the main challenges to reach the expected effects of changes and investments made in these areas during the period January 2016-December 2017. Data presented in this paper was collected through dialogues, interviews and a questionnaire addressing SBE partners from companies, public organizations and agencies. Findings propose that much focus has been on digitalizing the information flow within and between organizations, yet many respondents state they now struggle with getting the organization and working methods "in place" to also benefit from the (mainly technical) investments made. Many respondents also express having implemented or at least initiated the implementation of applications in digitalization that are new to the Swedish built environment sector. Yet, there seem to be significant differences between what levels of digitalization different actors currently find themselves at, as well as what they are aiming for, which has implications for the efficiency of the information flow. Moreover, what is understood to contribute to further digitalization and a more unbroken information flow is described differently within as well as between organizations. 

  • 16.
    Moscati, Annika
    et al.
    Sapienza University of Rome.
    Lombardo, Julie
    Losciale, Luigi Valentino
    De Luca, Livio
    UMR 3495 (CNRS/MCC) MAP - Modèles et simulations pour l’Architecture et le Patrimoine.
    Visual browsing of semantic descriptions of heritage buildings morphology2011Inngår i: Digital Media and its Applications in Cultural Heritage, DMACH, Amman, 16-17 March, 2011., Amman: The Center for the Study of Architecture in the Arab Region , 2011Konferansepaper (Fagfellevurdert)
    Abstract [en]

    This contribution focuses on the possibility to link and visualize the relation between a 3D representation of an architectural building and its conceptual description by a graph-based browser interface. For this reason it is used a 3D model and a web application, the Nubes Visum. This platform utilizes a semantic description model that is defined by a semantic level, a structural level and a representation one. To have a new approach at the stored information we added to Nubes Visum another interface that is divided into two parts: the interactive 3D model and an interactive graph. Being a tree structure every node can have children with the same characteristics. This graph allows to establish a privileged link between the 3D representation of buildings and the concepts that describe them in the world of knowledge. The model's hierarchy is expressed by the tree hierarchies of the graph and in the same web page it is possible to choose the graph related to one of the three semantic description levels. By this bilateral relation between information written in the graph and elements describing the object morphology, is possible to perform information searches in two directions: the seek related to the selected entities in the 3D scene and search of entities in the 3D scene trough queries obtained from database.

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