Numerical Investigation of a UHPC Connection Detail for Simple for Dead Load and Continuous for Live Load Steel Bridges in Seismic Areas

Author:

Khodayari Abbas1ORCID,Sadeghnejad Amir1ORCID,Azizinamini Atorod1ORCID

Affiliation:

1. Department of Civil and Environmental Engineering, Florida International University, Miami, FL 33174, USA

Abstract

The simple for dead load and continuous for live load (SDCL) steel bridge system offers an accelerated construction solution for steel bridges. The available details for the SDCL steel bridge system consist of a cast-in-place normal strength concrete (NSC) diaphragm. This paper presents a study on developing a continuity detail SDCL system in seismic areas using ultra-high-performance concrete (UHPC) as the diaphragm to simplify construction, improve durability, and increase tolerances. This paper is part of a large study on the non-seismic and seismic application of the SDCL steel bridge system using the UHPC diaphragm. The numerical investigation and validated modeling techniques developed in the study were used in this paper to focus on the detail required for the seismic areas. A series of numerical models were developed and subjected to types of loadings that would occur in the bridge under earthquake excitations. Based on the analysis results, a set of design recommendations was developed. The UHPC connection includes simple girder-end detail, the straight development of deck reinforcement in the diaphragm, and partial use of UHPC in the diaphragm. The developed detail can improve the on-site construction time, durability, and constructability of SDCL steel bridge systems.

Funder

US Department of Transportation

Publisher

MDPI AG

Reference46 articles.

1. Farimani, M.M. (2006). Resistance Mechanism of Simple-Made-Continuous Connections in Steel Girder Bridges, The University of Nebraska-Lincoln.

2. Niroumand, S.J. (2009). Resistance Mechanism of Simple-Made-Continuous Connections in Skew and Non-Skew Steel Girder Bridges Using Conventional and Accelerated Types of Construction, The University of Nebraska-Lincoln.

3. Taghinezhadbilondy, R. (2016). Extending Use of Simple for Dead Load and Continuous for Live Load (SDCL) Steel Bridge System to Seismic Areas, Florida International University.

4. Deck-pier connection detail for the simple for dead load and continuous for live load bridge system in seismic regions;Taghinezhadbilondy;Eng. Struct.,2018

5. Seismic performance of a new connection detail in an SDCL steel bridge system;Sadeghnejad;J. Bridge Eng.,2019

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