Analysis of numerical models of an integral bridge resting on an elastic half-space
Article Category: Original Study
Published Online: Dec 22, 2024
Page range: 337 - 348
Received: Apr 17, 2024
Accepted: Nov 11, 2024
DOI: https://doi.org/10.2478/sgem-2024-0026
Keywords
© 2024 Andrzej Helowicz, published by Sciendo
This work is licensed under the Creative Commons Attribution 4.0 International License.
The paper presents three methods of the numerical modeling of a 60 m long integral bridge structure resting on an elastic half-space. For the analysis, three bridge models were built using Abaqus FEA software. Models A and C represent complex three-dimensional numerical models consisting of the bridge structure and the soil layer beneath it. The soil layer on which the bridge is resting was modeled as a homogeneous, isotropic, continuous, and elastic semi-infinite body elastic half-space. Model B represents a simple three-dimensional numerical model consisting of just the bridge structure. The stiffness of the soil layer beneath the structure in model B was modeled with spring constants derived for shallow footing foundation based on the theory for an elastic half-space. This model represents an engineering approach to the design of an integral bridge. In all models, the bridge deck is monolithically connected with abutment walls and intermediate piers. The bridge is made of cast-