Unconventional Structural Forms in Pedestrian Bridge Design
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Bibliographic Details
Author(s): |
Andrea E. Del Grosso
Paolo Basso |
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Medium: | conference paper | ||||
Language(s): | English | ||||
Conference: | IABSE Symposium: Large Structures and Infrastructures for Environmentally Constrained and Urbanised Areas, Venice, Italy, 22-24 September 2010 | ||||
Published in: | IABSE Symposium Venice 2010 | ||||
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Page(s): | 520-521 | ||||
Total no. of pages: | 8 | ||||
Year: | 2010 | ||||
DOI: | 10.2749/222137810796025681 | ||||
Abstract: |
Trends in pedestrian bridge design are going to overreach the simple idea of connecting point A and point B. As growing communities have sought to define and differentiate themselves, footbridge design has become an aesthetically pleasant way for communities or neighborhoods to create a landmark. Such bridges are incorporating more thoughtful designs, complex engineering, and elegant materials as civic revisionists look to pedestrian bridges to make a statement. In this context technological advances have helped architects and engineers celebrate bridges' structural forms. Computer-aided techniques in particular allow designers to create complex shapes and to investigate new structural systems and schemes often through a computational morphogenesis process. Starting from these considerations, the paper first presents a review and discussion of recent realizations in the field of pedestrian bridges, calling into evidence how design is more and more requiring a multidisciplinary approach, involving the integration of architectural and engineering disciplines. This discussion drives the presentation of some examples that are given in the last section of the paper. In particular, a few examples of unconventional structural forms potentially implementing some of the most challenging concepts previously indicated, and suitable for the realization of pedestrian bridges are presented and discussed. |
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Keywords: |
pedestrian bridge design free-form architecture architecture-engineering integration Memetic Algorithm Virtual Force Density Method
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