The present work is suggested as a contribution to the debate on Reverse Modeling (RM) topic in the Cultural Heritage field. It wants to test the methodology, the limits and the bottlenecks of the RM pipeline in the architectural field, with particular attention to the geometric shapes reading and interpretation. The mathematical reconstruction of architectural models represents an overlaid result of anthropic and natural transformations framed inside a complex process of shape simplification and surface generation. This pipeline must be supported by a careful Heritage reading by means of architecture rules, both preserving the actual shape and the original intent of the building designer. The integration of these last two aspects make the process of RM applied to CH extremely complex. It involves a cognitive activity aimed at choosing on the one hand the best 3D survey technique to obtain reliable 3D data, on the other hand reaching a suitable architectural knowledge for achieving a plausible modeling result. The research presented describes a RM process applied to an ecclesiastical architecture, highlighting some key passages: an integrated survey approach to extract geometrical information, data analysis and generation of a mathematical 3D model, reliable from both a formal and cultural point of view.

Reverse modeling of cultural heritage. Pipeline and bottlenecks / Camagni, Flavia; Colaceci, Sara; Russo, Michele. - In: INTERNATIONAL ARCHIVES OF THE PHOTOGRAMMETRY, REMOTE SENSING AND SPATIAL INFORMATION SCIENCES. - ISSN 2194-9034. - Volume XLII-2/W9:(2019), pp. 197-204. (Intervento presentato al convegno Workshop 3D-ARCH “3D Virtual Reconstruction and Visualization of Complex Architectures” tenutosi a Bergamo, Italia) [10.5194/isprs-archives-XLII-2-W9-197-2019].

Reverse modeling of cultural heritage. Pipeline and bottlenecks

CAMAGNI, FLAVIA
Primo
Membro del Collaboration Group
;
Sara Colaceci
Secondo
Membro del Collaboration Group
;
Michele Russo
Ultimo
Membro del Collaboration Group
2019

Abstract

The present work is suggested as a contribution to the debate on Reverse Modeling (RM) topic in the Cultural Heritage field. It wants to test the methodology, the limits and the bottlenecks of the RM pipeline in the architectural field, with particular attention to the geometric shapes reading and interpretation. The mathematical reconstruction of architectural models represents an overlaid result of anthropic and natural transformations framed inside a complex process of shape simplification and surface generation. This pipeline must be supported by a careful Heritage reading by means of architecture rules, both preserving the actual shape and the original intent of the building designer. The integration of these last two aspects make the process of RM applied to CH extremely complex. It involves a cognitive activity aimed at choosing on the one hand the best 3D survey technique to obtain reliable 3D data, on the other hand reaching a suitable architectural knowledge for achieving a plausible modeling result. The research presented describes a RM process applied to an ecclesiastical architecture, highlighting some key passages: an integrated survey approach to extract geometrical information, data analysis and generation of a mathematical 3D model, reliable from both a formal and cultural point of view.
2019
Workshop 3D-ARCH “3D Virtual Reconstruction and Visualization of Complex Architectures”
reverse modelling; massive survey; cultural heritage; multi-scale 3D; NURBS; mathematical models
04 Pubblicazione in atti di convegno::04h Atto di convegno in rivista scientifica o di classe A
Reverse modeling of cultural heritage. Pipeline and bottlenecks / Camagni, Flavia; Colaceci, Sara; Russo, Michele. - In: INTERNATIONAL ARCHIVES OF THE PHOTOGRAMMETRY, REMOTE SENSING AND SPATIAL INFORMATION SCIENCES. - ISSN 2194-9034. - Volume XLII-2/W9:(2019), pp. 197-204. (Intervento presentato al convegno Workshop 3D-ARCH “3D Virtual Reconstruction and Visualization of Complex Architectures” tenutosi a Bergamo, Italia) [10.5194/isprs-archives-XLII-2-W9-197-2019].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1230233
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