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

  • Bekaert and Maccaferri form tunnelling partnership
    June 18, 2014
    Specialist firms Bekaert and Maccaferri are establishing a partnership aimed at the tunneling market. The two companies will set up a global sales and distribution joint venture that will provide construction reinforcement solutions for underground infrastructure projects. Bekaert, is a market and technology leader in steel wire transformation and coatings, while Maccaferri is a supplier of advanced solutions to the civil, geotechnical and environmental construction markets. The companies will set up the pa
  • Egypt’s road programme is now restarting
    February 20, 2014
    Egypt is developing its road network – local reporting and images by Egypt correspondent Mohammed Elsayed Tantawy. Egypt is now gearing up its road construction activity, with a view to reducing congestion and improving traffic flow. The country’s main highway connecting capital Cairo with the port city of Alexandria has already seen a major widening programme, but other important routes are also now being upgraded and improved. The road development programme started in earnest some years ago but was delaye
  • Chile's challenging bridge and tunnel construction
    February 27, 2012
    SACYR Chile is constructing a bridge on the new Northeast Access Highway in the capital Santiago, and when complete the 22.5km route will link the suburbs of Vitacura and Colina to the city. Acceso Nororiente, opening this year, is the fifth urban freeway in Santiago and stands out because of the challenges in the construction of its bridges ands tunnels.
  • Korean bridge construction poses challenges
    April 5, 2012
    On South Korea's southern coast, an innovative highway sea crossing is providing many engineering challenges The new Busan-Geoje crosses from South Korea's second city to its biggest island and is slightly shorter than the 12km of the country's famous Incheon project. In addition the main cable stay bridge for the Busan-Geoje project has a 475m span rather than the 800m of the Incheon central span. However the 8.2km Busan-Geoje project faces perhaps greater technical challenges and also includes a second b