Skip to main content

Upgrade for Medieval bridge

One of the most demanding and challenging impressed current cathodic protection (ICCP) projects ever undertaken by specialist main contractor Concrete Repairs Ltd (CRL) is being carried out on Bideford Longbridge in County Devon, UK. The 24-span medieval masonry arch bridge spans 190m over the tidal estuary of the River Torridge.
February 29, 2012 Read time: 2 mins
Bideford Longbridge, the 24-span medieval masonry spans 190m over the River Torridge
One of the most demanding and challenging impressed current cathodic protection (ICCP) projects ever undertaken by specialist main contractor 3416 Concrete Repairs Ltd (CRL) is being carried out on Bideford Longbridge in County Devon, UK.

The 24-span medieval masonry arch bridge spans 190m over the tidal estuary of the River Torridge. Each span varies from 6.5m to 11m, and this is thought to be because the masonry bridge was built around the original timber bridge whose spans were dictated by the length of timber available at the time. During its lifetime the bridge has been widened a number of times to accommodate the changing nature and density of traffic flows. The last widening was completed in 1928 when reinforced concrete cantilever sections were added to each side of the masonry arches.

Following a structural assessment in 2006, Devon County Council identified 21 weakened cantilevers and the onset of corroding steel reinforcement, caused as a result of high chloride levels and lack of concrete cover. A 3tonne weight restriction was applied while various long term renovation solutions to safeguard the bridge were considered.

CRL was awarded the council contract to repair the concrete cantilevers in September 2008. The £2m project (E2.34 million) is particularly testing due to the combination of ICCP anode systems comprising mixed metal oxide coated titanium mesh and discrete mixed metal oxide coated titanium tubular anodes to ensure a uniform current distribution.

At the same time, the partial demolition and reconstruction of reinforced concrete elements is being carried out and a new underbridge lighting system is being installed, all of which is taking place from restricted scaffold access and in a tidal environment. The project is scheduled for completion in October 2009.

For more information on companies in this article

Related Content

  • Fehmarn Belt Tunnel opening set for mid-2029
    August 16, 2024
    Around 1,500 tonnes of reinforcement for casting the concrete tunnel elements are produced weekly for the 17.6km Fehmarn Belt Tunnel that will connect the Danish island of Lolland with the German island of Fehmarn.
  • Ship Canal Bridge project in Texas restarting
    December 10, 2021
    Work is restarting in Texas for the Ship Canal Bridge project.
  • Surfaces made safe
    April 4, 2012
    Spanning Manahawkin Bay, and carrying traffic along Route 72 between Long Beach Island and Manahawkin, New Jersey, USA, the Dorland J. Henderson Memorial Bridge, known as the Manahawkin Bay Bridge, was in need of repair. New Jersey Department of Transportation (NJDOT) specified Transpo T-17 MMA polymer concrete patch and T-18 MMA polymer concrete slurry overlay as approved materials for the 12,000m² bridge rehabilitation project on the steel girder bridge. All the bridge deck spalls were prepared and patche
  • RMD Kwikform 3D viaduct design aids single concrete pour in Norway
    March 13, 2015
    Engineers with RMD Kwikform used 3D modelling to overcome challenging terrain and tight schedules for pouring a single-deck concrete viaduct in mid-Norway. The Doro Viaduct is a post-tension three-span single-carriageway measuring 9.5m wide. It forms an important part of the large realignment of the E39 Harangen-Høgkjølen route in the Trondheim mid-region of Norway. The project needed a formwork and shoring solution to support a 93m-long, 750m3 single-deck pour for the three span Doro viaduct in Norway. For