Ponencia
Dynamic identification of historical and singular baroque vaults designed by Balthasar Neumann basilica of the fourteen holy helpers and chapel of the Wurzburg residence (Germany).
Autor/es | Pachón García, Pablo
Compán Cardiel, Víctor Jesús Cámara Pérez, Margarita Rottner, Mathias |
Departamento | Universidad de Sevilla. Departamento de Estructuras de Edificación e Ingeniería del Terreno |
Fecha de publicación | 2017 |
Fecha de depósito | 2024-01-19 |
Publicado en |
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Resumen | Balthasar Neumann was a German Baroque architect with a wide experience on the design and construction of geometrically singular masonry vaults. Understanding the complex behaviour of this masonry vaults appears as a ... Balthasar Neumann was a German Baroque architect with a wide experience on the design and construction of geometrically singular masonry vaults. Understanding the complex behaviour of this masonry vaults appears as a fundamental aspect to ensure its proper preservation. It is well known that historical heritage has to be preserved and different technical analysis are usually necessary to achieve it. Before performing these analyses, non-destructive techniques are usually an indispensable tool to provide information about the current structural behavior of the building. The use of ambient vibration tests and operational modal analysis method are widespread as a process to identify dynamic properties of historical constructions from a global point of view, but not to identify these dynamic properties of specific elements. In this paper, these techniques are used to characterize dynamically concrete parts of the Basilica of the Fourteen Holy Helpers and Chapel of the Würzburg Residence, specifically its roofs. |
Cita | Pachón García, P., Compán Cardiel, V.J., Cámara Pérez, M. y Rottner, M. (2017). Dynamic identification of historical and singular baroque vaults designed by Balthasar Neumann basilica of the fourteen holy helpers and chapel of the Wurzburg residence (Germany).. En 4th International Conference on Mechanical Models in Structural Engineering (CMMOST 2017), Madrid. |
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