1974•Unpublished venueRequires access

INFLUENCE LINES FOR TWO AND THREE SPAN CONTINUOUS CURVED GIRDER BRIDGES

D B Evans, C P Heins

Open publisher page 0 citations

Abstract

A series of influence line tables and equations have been presented, which will permit an initial design of a two or three span continuous bridge. The design technique is applicable to both dead and live loads applied perpendicularly to the plane of the structure or as torsional moments applied along the longitudinal axis parallel to the plane of the structure. The design procedure is based on the relative behavior of a single isolated curved girder to the response of the same girder when acting in conjunction with a system of curved girders. Therefore, by applying appropriate factors, the system response can be determined from the single girder forces as computed from the influence line charts. This affords a simplified, methodical approach toward the design of multi-span curved girder bridges. The method developed, herein, will negate the need to apply complicated mathematical expressions or sophisticated computer programs to permit an initial design of continuous curved bridges. /FHWA/

About this research paper

What this paper is about

A series of influence line tables and equations have been presented, which will permit an initial design of a two or three span continuous bridge. The design technique is applicable to both dead and live loads applied perpendicularly to the plane of the structure or as torsional moments applied along the longitudinal axis parallel to the plane of the structure. The design procedure is based on the relative behavior of a single isolated curved girder to the response of the same girder when acting in conjunction with a system of curved girders. Therefore, by applying appropriate factors, the system response can be determined from the single girder forces as computed from the influence line charts. This affords a simplified, methodical approach toward the design of multi-span curved girder bridges. The method developed, herein, will negate the need to apply complicated mathematical expressions or sophisticated computer programs to permit an initial design of continuous curved bridges. /FHWA/

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

A series of influence line tables and equations have been presented, which will permit an initial design of a two or three span continuous bridge. The design technique is applicable to both dead and live loads applied perpendicularly to the plane of the structure or as torsional moments applied along the longitudinal axis parallel to the plane of the structure. The design procedure is based on the relative behavior of a single isolated curved girder to the response of the same girder when acting in conjunction with a system of curved girders. Therefore, by applying appropriate factors, the system response can be determined from the single girder forces as computed from the influence line charts. This affords a simplified, methodical approach toward the design of multi-span curved girder bridges. The method developed, herein, will negate the need to apply complicated mathematical expressions or sophisticated computer programs to permit an initial design of continuous curved bridges. /FHWA/

Key concepts: Girder, Structural engineering, Span (engineering), Bridge (graph theory), Perpendicular, Engineering, Influence line, Line (geometry)

Related papers

Back to paper searchBrowse research topicsOriginal source
INFLUENCE LINES FOR TWO AND THREE SPAN CONTINUOUS CURVED GIRDER BRIDGES — Research Paper | ScholarLens