Skip to main content

RINA Consulting starts to lower Morandi Bridge sections

Deconstruction of the collapsed Morandi Bridge in Genoa, Italy, has begun, according to RINA Consulting. The first bridge deck section was lowered to the ground from a height of 48m, said Roberto Carpaneto, chief executive of RINA which is responsible for design control and construction management of the project. "We are really satisfied with how this delicate operation is being conducted with the whole construction team working as one to guarantee the best result.” RINA Consulting was chosen by the c
February 14, 2019 Read time: 2 mins

Deconstruction of the collapsed Morandi Bridge in Genoa, Italy, has begun, according to RINA Consulting.

The first bridge deck section was lowered to the ground from a height of 48m, said Roberto Carpaneto, chief executive of RINA which is responsible for design control and construction management of the project. "We are really satisfied with how this delicate operation is being conducted with the whole construction team working as one to guarantee the best result.”

RINA Consulting was chosen by the commissioning structure for project management, construction supervision, health and safety overview and quality assurance during the execution phase of the bridge’s demolition and the construction of the new one on the Polcevera valley.

The new 1.1km bridge has been designed by Renzo Piano and will be more than 45m high. The bridge should be open to traffic my mid 2020.

RINA provides services across the energy, marine, certification, transport and infrastructure sectors. Turnover in 2017 was €437 million and the group has around 3,700 employees and 170 offices in 65 countries.

 The longest span of the 1.18km bridge was 210m and the structure had a 40m clearance above the river Polcevera. It was opened in 1967 officially as the Polcevera Viaduct and was part of the A10 motorway as well as European route E80.

It featured diagonal cable-stays with vertical trestle-like supports made up of sets of Vs. One set carrying the roadway deck, while the other pair of inverted Vs supported the top ends of two pairs of diagonal stay cables.

The bridge was closed to traffic in August last year after the longest span collapsed during a major storm, killing 43 people. The bridge had a history of high maintenance costs.

Related Content

  • Turkish highways and bridge project financing secured
    June 7, 2018
    The financing package that will pay for Turkey’s €2.43 billion Malkara to Çanakkale highway and 1915 Çanakkale Bridge has now been secured. This follows on from Mott MacDonald completing its technical due diligence of the project documentation. The project will be handled under the PPP model. The centrepiece of the project is the €1.68 billion Çanakkale 1915 bridge. This will be over 4.6km long, with a 2,023m main span that will be the longest in the world for a suspension bridge. It will allow a clearance
  • Bridge collapses in Tuscany, Italy
    April 9, 2020
    A road bridge has collapsed in Tuscany, Italy.
  • Colombia’s longest bridge part of major project
    September 14, 2016
    Construction activity is underway on a number of key transport infrastructure projects in Colombia. A major bridge project spanning the Magdalena River is currently under construction close to the city of Barranquilla in the north of Colombia. The Pumarejo Bridge was commissioned by Instituto Nacional de Vías (INVIAS) and is being built by a consortium. Featuring a cable-stayed design, the bridge will be 2.28km in length, with three lanes for vehicles, as well as a pedestrian area and a cycle track in b
  • Zhejiang Jiashao Bridge Investment & Development Co
    April 6, 2017
    Located in Zhejiang Province of China, Jiashao Bridge spans the Qiantang River and connects the cities of Jiaxing and Shaoxing. The total length of the bridge project is 10.14km and carries an eight-lane expressway The Qiantang River suffers from a high flow rate of up to 7.5m/s. As the tidal range is around 7-9m, the water depth is less than 2m in time of low level tide, so ships can only move at high tide and large scale ship-lifting equipment cannot be used downstream of Jiashao Bridge. However, to