Der Modelle Tugend 2.0 → Digitale 3D-Rekonstruktion Als Virtueller Raum Der Architekturhistorischen Forschung Bibliografie

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Der Modelle Tugend 2.0 → Digitale 3D-Rekonstruktion Als Virtueller Raum Der Architekturhistorischen Forschung Bibliografie Bibliografie Bibliografie Interface, in: Geoinformatics FCE CTU Journal, 6, 2011, S. 10 – 17. Alle Webseiten wurden am 04.07.2019 abgerufen. Jörg Albertz, Information aus Bildern – 100 Jahre Entwicklung in Photogrammetrie und 123 Fernerkundung, in: VGI – Österreichische 22th Conference on Cultural Heritage and Zeitschrift für Vermessung und Geoinformati- New Technologies, Round Table, Data Model on 85, ( 4 ) 1997, S. 251–259. Beyond the Digital 3D Model, Wien 2017, Steffen Albrecht, Scholars’ Adoption of http://www.chnt.at/data-model-beyond- E-Science Practices: ( Preliminary ) Results the-digital-3d-model/. from a Qualitative Study of Network and Other 3D Systems, Inc. StereoLithography Interface Influencing Factors, in: XXXIII. Sunbelt Social Specification, Valencia 1989. Networks Conference of the International Network for Social Network Analysis ( INSNA ), A 21 – 26 May 2013, Hamburg 2013. Jennifer L. Adams, Kevin B. Gunn, Keeping Up ALLPLAN, Allplan Architecture, https://www. With… Digital Humanities, in: American Library allplan.com/de. Association, 5. April 2013. Torsten Althin, Nya avdelningar Kongl. Modell- Alonzo C. Addison, Virtual Heritage: Technolo- kammaren, Fysikaliska experiment, Mekanisk gy in the Service of Culture, Paper presented ljudåtergivning, in: Daedalus. Tekniska muse- at the Proceedings of the 2001 conference on ets årsbok 1947, Stockholm 1947. Virtual reality, archeology, and cultural heritage, Athens, Greece, 28 – 30 November 2001. Rafael Alvarado, The Digital Humanities Situation, in: The Transducer, 5 ( 11 ) 2011. Lesley Adkins, Roy A. Adkins, Archaeological Illustration, Cambridge: Cambridge University Sabine Ammon, Inge Hinterwaldner ( Hg. ), Press, 2009. Bildlichkeit im Zeitalter der Modellierung. Operative Artefakte in Entwurfsprozessen der Janice Affleck, Thomas Kvan, Reinterpreting Architektur und des Ingenieurwesens, Pader- Virtual Heritage, in: CAADRIA 2005 Conferen- born 2017. ce Proceedings, New Delhi ( India ), vol. 1, 2005, S. 169 – 178. Eike F. Anderson, Leigh McLoughlin, Fotis Liarokapis, Christopher Peters, Panagiotis Giorgio Agugiaro, Fabio Remondino, Gabrio Petridis, Sara de Freitas, Developing Serious Girardi, Jennifer von Schwerin, Heather Games for Cultural Heritage: A State-of-the- Richards-Rissetto, Raffaele De Amicis, Query- art review, in: Virtual Reality 14 ( 4 ) 2010, arch3D: Querying and Visualising 3DModels S. 255–275. of a Maya Archaeological Site in a Web-based 566 Der Modelle Tugend 2.0 → Digitale 3D-Rekonstruktion als virtueller Raum der architekturhistorischen Forschung Bibliografie Ansi, ASME Y14.26M – Initial Graphics Exch- Case Study of the Pompeii Archaeological ange Specification ( IGES ) 1980. Area, in: Journal of Archaeological Science, 39, 2012, S. 1271 – 1287. Peter Apian-Bennewitz, New Scanning Go- nio-photometer for Extended BRTF Measure- Fabrizio I. Apollonio, Marco Gaiani, Cristiana ments, in: SPIE Optical Engineering+ Applica- Corsi, A Semantic and Parametric Method for tions, 77920O–77920O. International Society 3D Models Used in 3D Cognitive-information for Optics and Photonics, 2010. System, in: Future cities, 28th eCAADe 2010 Conference, Zurich 2010, S. 717 – 726. Fabrizio I. Apollonio, Classification Schemes for Visualization of Uncertainty in Digital Fabrizio Ivan Apollonio, Marco Gaiani, Zheng Hypothetical Reconstruction, in: S. Münster, M. Sun, 3D Modeling and Data Enrichment in Pfarr-Harfst, P. Kuroczyński, M. Ioannides ( Hg. ), Digital Reconstruction of Architectural 3D Research Challenges in Cultural Heritage II. Heritage. International Archives of the Photo- How to Manage Data and Knowledge Related grammetry, in: Remote Sensing and Spatial to Interpretative Digital 3D Reconstructions of Information Sciences, XL-5-W2 – 43, 2013, Cultural Heritage, Heidelberg, Cham 2016, S. 43 – 48. S. 173–197. Fabrizio I. Apollonio, Marco Gaiani, Zheng Sun, Fabrizio I. Apollonio, Conceptual Modelling Characterization of Uncertainty and Approxi- and Cognitive Process in 3D Virtual Reconst- mation in Digital Reconstruction of CH ruction, in: Conference on Cultural Heritage Artifacts, in: Le vie dei Mercanti. XI Forum and New Technologies, 8 – 10.11.2017, Internazionale di Studi, Napoli 2013( b ), Vienna 2017. S. 860 – 869. Fabrizio I. Apollonio, Simone Baldissini, Paolo Fabrizio I. Apollonio, Elisabetta C. Giovannini, A Clini, Marco Gaiani, Caterina Palestini, Camillo Paradata Documentation Methodology for the Trevisan, The PALLADIOlibrary Geo-models: Uncertainty Visualization in Digital Reconst- an Open 3D Archive to Manage and Visualize ruction of CH Artifacts, in: SCIRES-IT, 5 ( 1 ), Information-communication Resources about 2015, S. 1 – 24. Palladio, in: XXIV Int. CIPA Symposium, Stras- Fabrizio I. Apollonio, Federico Fallavollita, bourg. ISPRS Archives, XL-5/W2, 2013, Elisabetta Caterina Giovannini, Porta Aurea in S. 49 – 54. Ravenna: a Digital Hypothetical Reconstructi- Fabrizio I. Apollonio, Cristiana Corsi, Marco on, in: Virtual Archeology: Methods and Gaiani, Simone Baldissini, An Integrated 3D benefits, Saint Petersburg 2015, S. 189 – 194. Geodatabase for Palladio’s Work, in: The Fabrizio I. Apollonio, Federico Fallavollita, International Journal of Architectural Compu- Elisabetta C. Giovannini, Riccardo Foschi, ting, 8, 2010, S. 107 – 129. Salvatore Corso, The Reconstruction of Drawn Fabrizio I. Apollonio, Marco Gaiani, Guido Architecture, in: Studies in Digital Heritage, 1 Beltramini, Giacomo Fabbi, Villa Contarini a ( 2 ), 2017, S. 1:380 – 1:395 Piazzola sul Brenta: studi per un’ipotesi di Yusuf Arayici, John Counsell, Lamine Mahdjou- attribuzione palladiana servendosi di modelli bi, Gehan Ahmed Nagy, Soheir Hawas, Khaled tridimensionali, in: Disegnare idee immagini, Dweidar ( Hg. ), Heritage Building Information 42, 2011. Modelling, Routledge, 2017. Fabrizio I. Apollonio, Marco Gaiani, Benedetto Arbeitsgruppe Digitale 3D-Rekonstruktion, Benedetti, 3D Reality-based Artefact Models http://www.digitale-rekonstruktion.info/. for the Management of Archaeological Sites Using 3D Gis: A Framework Starting from the 567 Der Modelle Tugend 2.0 → Digitale 3D-Rekonstruktion als virtueller Raum der architekturhistorischen Forschung Bibliografie Christopher J. Arnold, Jeremy W. Huggett, B Excavations at Mathrafal, Powys, 1989, in: Geeske Bakker, Frans Meulenberg, Jan De Montgomeryshire collections, Bd. 83, 1995, Rode, Truth and Credibility as a Double S. 59–74. Ambition: Reconstruction of the Built Past, Christopher J. Arnold, Jeremy W. Huggett, Paul Experiences and Dilemmas, in: Journal of Reilly, C. Springham, Mathrafal: a Case Study Visualization and Computer Animation, 14 ( 3 ) in the Application of Computer Graphics, in: 2003, S. 159 – 167. Sebastian Rahtz ( Hg. ), Computer Applications Taylor D. Baldwin, Arne R. Flaten, Adapting the and Quantitive Methods in Archaeology 1989. Agile Process to Digital Reconstructions of CAA89 ( BAR International Series 548 ) 1989, the Temple of Apollo at Delphi, in: M. Zhou S. 147 – 155. ( Hg. ), Revive the Past. Computer Applications David Arnold, 3D-COFORM – D.1.5 – PROJECT and Quantitative Methods in Archaeology FINAL REPORT, 2013. ( CAA ). Proceedings of the 39th International Conference, Amsterdam 2012, S. 30 – 37. 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Christian Bartenbach, Walter Witting, Hand- Austrian Standards, Digitale Bauwerksdoku- buch der Lichtgestaltung: Lichttechnische mentation – Teil 2: Building Information und wahrnehmungsphsychologische Grund- Modeling ( BIM ) – Level 3-iBIM [ÖNORM A lagen, Wien 2009. 6241 – 2], Wien 2015. Susan Batley, Classification in Theory and Austrian Standards, Industry Foundation Practice, Oxford 2005. Classes ( IFC ) für den Datenaustausch in der Bruce G. Baumgart, Winged Edge Polyhedron Bauwirtschaft und im Anlagenmanagement Representation, Stanford 1972. [ISO Norm 16739:2013], Wien 2017. Arvid Bæckström, Kongl. Modellkammaren, in: Autodesk, Revit, https://www.autodesk.de/ Daedalus. Tekniska museets årsbok 1959, products/revit-family/overview. Stockholm 1959. Salman Azhar, Michael Hein, Blake Sketo, Franz X. Bea, Elisabeth Göbel, Organisation. Building Information Modeling ( BIM ): Benefits, Theorie und Gestaltung, Stuttgart 2010. Risks and Challenges, in: 44th ASC Annual Conference, 2008. 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