Assessing Soil-Shaft Interaction at an Instrumented Bridge in California in Terms of Effects of Shaft Nonlinear Properties in Various Earthquake Scenarios

Deep Foundations Institute
Reza Mohammadi Ramin Motamed
Organization:
Deep Foundations Institute
Pages:
10
File Size:
1696 KB
Publication Date:
Oct 7, 2024

Abstract

Finite element methods play a crucial role in analyzing dynamic responses within soil-foundation-structural systems during earthquakes. The validation of these models using seismic recordings is paramount for their application in the seismic design of foundations. This paper focuses on the refinement and validation of finite element models developed to study the response of drilled shafts at the Hayward-I580/238 bridge in California. The research methodology employs a two-step finite element modeling approach. In the initial phase, a free-field soil model of the site was developed in a two-dimensional model with OpenSees. Subsequently, a drilled shaft with an elastic section was modeled to investigate the response of the deep foundation to earthquake motions. However, acknowledging that these assumptions may not fully represent actual conditions, a three-dimensional free-field model of the bridge site was developed using OpenSees software in this study. Additionally, an inelastic section model for one of the bridge's drilled shaft was introduced to better capture the shaft's response under seismic forces. Given the relatively weak ground motions recorded by the accelerometers at the Hayward-I580/238 bridge, hypothetical earthquake scenarios were generated to depict the nonlinear response of the model. The available recorded motions were used to fit the target design spectrum at the Hayward-I580/238 bridge following AASHTO-2009. Subsequently, the shaft's reaction was analyzed under seismic forces, examining various parameters such as displacements and reaction forces. The results highlight the impact of the introduced modifications on the accuracy of the finite element models under both weak and strong earthquakes. In conclusion, the enhanced models not only contribute to monitoring drilled shaft behavior during seismic events but also establish a robust framework for future seismic designs of drilled shafts, showcasing the benefits of OpenSees in seismic design of deep foundations. Keywords: deep foundation, drilled shaft, OpenSees, soil-foundation interaction, seismic design
Citation

APA: Reza Mohammadi Ramin Motamed  (2024)  Assessing Soil-Shaft Interaction at an Instrumented Bridge in California in Terms of Effects of Shaft Nonlinear Properties in Various Earthquake Scenarios

MLA: Reza Mohammadi Ramin Motamed Assessing Soil-Shaft Interaction at an Instrumented Bridge in California in Terms of Effects of Shaft Nonlinear Properties in Various Earthquake Scenarios. Deep Foundations Institute, 2024.

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