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Abstract: This paper studies a new launching method for steel bridges based on a self-supporting deck system. This new and patent-protected procedure is able to launch bridges of a span length up to 150 m, in an economical and sustainable way. The use of the last span segments to reinforce the critical sections during launching replaces other conventional temporarymeans applied nowadays. The main objective of this research paper is to numerically analyse the best double deck configuration aswell as to define an approach to stiffener distribution in order to avoid the patch loading phenomenon in the slender webs. With this in mind, the pre-design of a triangular cell along the low flange of each web is presented. A three dimensional finite element model (FEM) is built and the design of experiments technique (DOE) is applied to obtain the best bridge configuration. This newconstructionmethod can be used togetherwith a continuous launching systemin order to increase the velocity of the whole operation and to improve safety during launching. Very good results have been obtained, in terms of deflection, patch loading resistance and vertical load on the pushing device. The comparisonwith other different construction systems and the application to a real case allows us to ensure the viability of the method described.
Fuente: Automation in Construction 44 (2014), 183–196
Fecha de publicación: 10/05/2014
Nº de páginas: 14
Tipo de publicación: Artículo de Revista
Proyecto español: IPT-380000-2010-12 ; BIA-2012-31609
Url de la publicación: http://dx.doi.org/10.1016/j.autcon.2014.04.008
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COZ DÍAZ, JUAN JOSÉ DEL
ALONSO MARTÍNEZ, MAR
ELENA BLANCO FERNANDEZ
DANIEL CASTRO FRESNO