Skip to main content

‘Formation flying’ engineering trains used to upgrade railway

In a bid to increase efficiencies and reduce delays for passengers, the UK’s Network Rail is trialling ‘formation flying’ engineering trains to repair and renew the 20,000 miles of railway track it is responsible for maintaining. It says this new approach to engineering could potentially save taxpayer-funded Network Rail US$313,000 (£250,000) per week in costs by allowing trains to run at higher speeds once engineering is complete. The pioneering technique was used successfully at Sandy, Bedfordshire, on
February 16, 2017 Read time: 2 mins
In a bid to increase efficiencies and reduce delays for passengers, the UK’s 5021 Network Rail is trialling ‘formation flying’ engineering trains to repair and renew the 20,000 miles of railway track it is responsible for maintaining. It says this new approach to engineering could potentially save taxpayer-funded Network Rail US$313,000 (£250,000) per week in costs by allowing trains to run at higher speeds once engineering is complete.

The pioneering technique was used successfully at Sandy, Bedfordshire, on a set of railway switches and crossings, which were being replaced as part of the Railway Upgrade Plan.

A pair of engineering trains were joined together connected by an umbilical and ran in parallel to simultaneously deliver tamping and dynamic track stabilisation (DTS) which simulated the equivalent of 200 trains passing over the tracks consecutively. Passenger trains were then able to start using the railway at speeds as high as 125mph as soon as the engineering team had finished because the track and ballast were firmly ‘bedded in’ – which meant Network Rail avoided thousands of pounds in compensation payments.

The news comes almost one year after Network Rail’s first successes with 125mph ‘high speed handbacks’ in January 2016 on regular plain line track. High speed handback ensures track is installed at each stage to its specific design tolerances, that care is taken while tamping to get the track to its final exact co-ordinates and that welding and stressing is completed as part of the core works.

Network Rail estimates that over US$6.2 million (£5 million) has already been saved by avoiding compensation payments since the start of the high speed handback programme.

Related Content

  • February 2, 2012
    Developments in smarter multi-modal fare paynment
    This section pulls together all the multi-modal topics in each issue. Subject matter will include smartcards; ticketing and payment systems; passenger information systems; fleet management for buses, trains and light rail; park and ride systems; on-line access to real-time information via Internet portals
  • April 9, 2014
    Buses services benefit from seamless Wi-Fi data transfer
    Ted Bowser explains how the almost total Wi-Fi coverage at Ride-On’s new bus garage is providing big benefits for the operator and passengers alike. The ability to download and upload data to and from the various systems on board buses has become central to mass transit operators’ business model. So when Ride-On, the public transportation system in Maryland’s Montgomery County, was moving one of its three depots into a bigger and purpose-built facility, connectivity was a key consideration.
  • July 16, 2012
    The cost benefits of LED traffic signals
    On 11 January 2005, the Kentucky Transportation Cabinet (KYTC) began installing GELcore LED traffic signal modules state-wide through an Energy Savings Performance Contract. In tendering for the work, the energy service contractors could choose any manufacturers equipment but all of them proposed to use the GELcore brand.
  • September 8, 2014
    Indra to implement high speed rail traffic management system
    State Turkish Rail (TCDD) has awarded Indra a US$55 million contract to implement a planning system for its entire rail network, together with a high-speed train management system. Indra will set up a new control centre in Ankara, equipped with cutting-edge technology, which will carry out operational planning for the country's 12,000 kilometre rail network, both conventional lines and high-speed tracks. In addition, Indra’s DaVinci rail traffic management system will support comprehensive high-speed