Skip to main content

Interchange project wins major engineering award

The Section 5 Palmetto SR826/836 Interchange project in Florida has won the 2016 FICE Engineering Excellence Grand Award in the Structures category.
December 11, 2015 Read time: 2 mins
The new interchange offers increased capacity and safety and helps cut congestion

The Section 5 Palmetto SR826/836 Interchange project in Florida has won the 2016 FICE Engineering Excellence Grand Award in the Structures category.

FINLEY Engineering was the engineer of record for the four segmental bridges, Number 9, 11, 15 and 19, and provided construction engineering expertise. The segmental bridges were precast, balanced cantilever and erected with a 140.2m launching gantry. The bridge lengths varied from 335.3m to 746.76m in length and are 14.35m-wide, with a maximum span length of 81m. The curved segmental bridge ramps are the third level of the interchange with radii down to 180m and have a maximum superstructure deck height of 29m. above the proposed ground. All of the bridges are supported on 610mm pile foundations and reinforced concrete piers and caps. The project was carried out for 2697 Florida Department of Transportation, the contractor was the Community, Condotte, De Moya Joint Venture and the prime design consultant was BCC Engineering.

The bridge design offered unique challenges integrating underlying roadways, canals and MOT requirements into the layout of these segmental bridge ramps. This project was constructed in the Miami International Airport flight path and had FAA Requirements. The high level segmental flyovers are built over multiple roads that carry 430,000 vehicles/day and are the tightest elevation curves erected in the United States. The all overhead erection eliminated the need for falsework and cranes and eliminated five MOT phases that would have impacted traffic, thereby providing a safer work environment. FINLEY integrated the design into the construction while satisfying the strong aesthetic requirements. The design reduced maintenance and construction costs with the use of external tendons, Diabolos and deviators. The use of polystyrene in the hollow pier columns, except at the base of the caps, eliminated the need for interior formwork and reduced the overall mass of the structure and concrete required.

For more information on companies in this article

Related Content

  • Washington DC’s historic bridge replacement project
    June 11, 2019
    The project to replace a historic bridge in US capital Washington DC is providing major challenges for its builders - Mike Woof writes
  • Bridge project uses high performing formwork
    February 20, 2012
    Doka designed and supplied a high-performing formwork technology solution for a challenging bridge project south of the German town of Halle. The 8,614m long single-cell box girder superstructure of the Saale-Elster Viaduct, with a typical cross section width of 13.9m, is borne on 220 piers, and has a constructional depth of 4m. It is mainly being erected on launching girders to minimise the impact on flora and fauna.
  • A new Indian cable-stayed bridge will improve transport connections
    March 2, 2015
    A major new cable-stayed bridge is being constructed in India - Partha Bratim Basistha reports. In India the construction of a major cable-stayed bridge is underway that will boost connections from capital Delhi to its surrounding areas. The bridge is being built in a bid to ease growing interstate traffic movement between Delhi and the surrounding North Indian states of Punjab, Uttar Pradesh, Haryana and Himachal Pradesh. Named Signature Bridge, this is a landmark structure due to its design aesthetics and
  • Winning formula for formwork
    July 19, 2012
    An unusual application of formwork took place recently in France, while formwork using one particular engineering construction kit was used for the first time in Poland. Guy Woodford reports An 80m long wild game underpass is an innovative feature of the Route Nationale 88 (RN 88) expansion in south-west France. For construction of the arched underpass tunnel, a PERI tunnel formwork carriage using VARIOKIT engineering construction kit was used. Thanks to the equipment’s easy handling, along with pre-assembl