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

  • December 16, 2013
    Smart phones offer smarter way to pay for travel
    David Crawford reviews developments in near field communications for mass transit payments. ‘A carefully-designed and well-implemented mobile near field communications (NFC) solutions can give passengers a compelling experience that will encourage them to make greater use of public transport.’ That was the confident conclusion of a recent joint White Paper drawn up by the International Association of Public Transport and the global mobile operators’ representative group GSMA.
  • June 4, 2014
    Kapsch communication solutions to modernise French railway
    French railway network Réseau Ferré de France (RFF) and railway manager Synerail have appointed Kapsch CarrierCom to accelerate the modernisation of the country’s existing GSM-R network with a next generation all-IP core solution based on the new Kapsch R4 architecture. The system will provide RFF and Synerail enhanced reliability and is the basis for innovative applications such as Railway Emergency Call (eREC) or train geolocation.
  • May 22, 2012
    New York pioneers online mobile real-time bus tracking
    An unusual technology collaboration. David Crawford investigates Early in January 2012, the New York City Metropolitan Transportation Authority (MTA) rolled out the first borough-wide implementation of its pioneering Bus Time online mobile real-time tracking service. The system allow commuters to track each bus on every route in real-time on the internet, via smartphones and by text messaging to a mobile phone. The MTA chose Staten Island for its first live launch due to it being the only one of the five Ne
  • March 9, 2016
    Intersection monitoring from video using 3D reconstruction
    Researchers Yuting Yang, Camillo Taylor and Daniel Lee have developed a system to turn surveillance cameras into traffic counters. Traffic information can be collected from existing inexpensive roadside cameras but extracting it often entails manual work or costly commercial software. Against this background the Delaware Valley Regional Planning Commission (DVRPC) was looking for an efficient and user-friendly solution to extract traffic information from videos captured from road intersections.