Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Soil Structure Interaction for Integral Abutment Bridge Using Spring Analogy Approach
The reaction of the backfill behind the abutments and adjacent to the piles plays a significant role in the behavior of the Integral bridge. The handling of soil-structure interaction in the analysis and design of integral abutment bridges has always been problematic due to its complexity. This study describes the implementation of a 2-D finite element model of IAB system which explicitly incorporates the soil response. The superstructure members and the pile have been represented by means of three-node isoperimetric beam elements with three degree of freedom per node. The Eight node isoperimetric quadrilateral element has been used to model the abutment. The backfill was idealized by uncoupled 'Winkler' spring. The applic1ability of this model is demonstrated by analyzing a single span IA bridge. The results have shown that the shear forces at the tops of the supported piles were only 12% to 16% of the load which at the top of abutment.
Soil Structure Interaction for Integral Abutment Bridge Using Spring Analogy Approach
The reaction of the backfill behind the abutments and adjacent to the piles plays a significant role in the behavior of the Integral bridge. The handling of soil-structure interaction in the analysis and design of integral abutment bridges has always been problematic due to its complexity. This study describes the implementation of a 2-D finite element model of IAB system which explicitly incorporates the soil response. The superstructure members and the pile have been represented by means of three-node isoperimetric beam elements with three degree of freedom per node. The Eight node isoperimetric quadrilateral element has been used to model the abutment. The backfill was idealized by uncoupled 'Winkler' spring. The applic1ability of this model is demonstrated by analyzing a single span IA bridge. The results have shown that the shear forces at the tops of the supported piles were only 12% to 16% of the load which at the top of abutment.
Soil Structure Interaction for Integral Abutment Bridge Using Spring Analogy Approach
Thanoon, W A (Autor:in) / Abdulrazeg, A A (Autor:in) / Noorzaei, J (Autor:in) / Jaafar, M S (Autor:in) / Kohnehpooshi, O (Autor:in)
IOP Conference Series: Materials Science and Engineering ; 17 ; 012035
01.02.2011
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
INTEGRAL ABUTMENT BRIDGE WITHOUT SOIL-STRUCTURE INTERACTION
Europäisches Patentamt | 2016
|Integral Bridge Abutment - Approach Embankment Interaction
British Library Conference Proceedings | 2010
|Soil-Bridge Abutment Interaction
NTIS | 1988
|Europäisches Patentamt | 2021
|Seismic Analysis of Integral Abutment Bridge in Tennessee, Including Soil-Structure Interaction
British Library Online Contents | 2010
|