Design Challenges and Solutions for the I-205 Abernethy Bridge

Deep Foundations Institute
Samuel Sideras James Walters Kathryn Petek
Organization:
Deep Foundations Institute
Pages:
6
File Size:
2601 KB
Publication Date:
Sep 1, 2024

Abstract

The Oregon Department of Transporta­tion {ODOT} is currently performing a seismic retrofit and widening of the Abernethy Bridge as part the 1-205: Stafford Road to OR213 Improvements Project. The Abernethy Bridge, located in Clackamas County, conveys traffic over the Willamette River between the cities of West Linn and Oregon City. The existing bridge structure was completed in 1971 and is approximately 2,700 ft {820 m) in length and consists of 14 piers and two abutments, not including on­and off-ramp structures. At the bridge ocation, the Willamette River is approximately 1,050 ft {320 m) wide. The main channel crossing structure comprises three spans up to 450 ft (137m) long supported on Piers 3 through 6. The west approach structure includes nine continuous spans up to 195 ft {60 m) long and supported on Piers 6 through 14 and Abutment 2. The existing bridge piers are supported on a combination of driven steel H-piles and shallow foundations bearing on basalt bedrock. Construction of the bridge widening and seismic retrofit began in July 2022, which will add one lane in each direction and increase the width of the existing bridge from 100 ft (30 m) to 140 ft {43 m). The seismic retrofit will improve bridge performance to con­temporary seismic design standards and feature a two-level seismic design approach including both operational and life safety design and performance criteria. The foundation design for the project was driven by the highly variable geologic conditions across the project alignment, site constraints and the significant seismic demands. To meet the seismic performance criteria, the foundation solutions for the widening and seismic retrofit included micropiles, ground improvement and drilled shafts up to 12 ft (3.6 m) in diameter. This article describes the foundation design process and methodology and the foundation mitigation solutions developed for the project, as well as discussion of using 12 ft {3.6 m) diameter drilled shafts to mitigate the impacts of deep-seated permanent soil displacements.
Citation

APA: Samuel Sideras James Walters Kathryn Petek  (2024)  Design Challenges and Solutions for the I-205 Abernethy Bridge

MLA: Samuel Sideras James Walters Kathryn Petek Design Challenges and Solutions for the I-205 Abernethy Bridge. Deep Foundations Institute, 2024.

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