Skip to main content

TRL aids Highways Agency with M2 motorway hole investigation

The UK’s transport research Laboratory (TRL) provided a rapid response when asked for help as part of the investigation of the recent appearance of a hole in the central reservation of the M2 between junctions 5 near Sittingbourne and 6, near Faversham. The hole that appeared is believed to be a dene hole; an historic man made hole which may have been used to mine for chalk hundreds of years ago. The hole was filled in when the M2 was constructed, but recent wet weather contributed to the destabilisati
February 21, 2014 Read time: 2 mins
The UK’s transport research Laboratory (491 TRL) provided a rapid response when asked for help as part of the investigation of the recent appearance of a hole in the central reservation of the M2 between junctions 5 near Sittingbourne and 6, near Faversham.  

The hole that appeared is believed to be a dene hole; an historic man made hole which may have been used to mine for chalk hundreds of years ago. The hole was filled in when the M2 was constructed, but recent wet weather contributed to the destabilisation of the ground, causing the hole to appear.

Within a few hours of being asked for assistance, TRL was able to mobilise a team to be on site to provide two coring rigs and staff to undertake investigations of the carriageway in one lane either side of the hole to establish its integrity. The carriageway is constructed of jointed reinforced concrete with a thick asphalt overlay.

Two TRL teams working round the clock cored approximately 38 holes to help determine the extent of the problem.

The 503 Highways Agency has now stabilised the hole with forty tonnes of pea shingle and further geotechnical investigations by TRL confirm that the ground beneath the M2 is safe for traffic to use.

Further resurfacing work has finished, with all lanes now re-opened, nine days after the 15ft deep hole swallowed up the road surface.

Related Content

  • March 11, 2014
    TRL provides expert opinion on A83 landslide
    Following the recent landslide on the A83 in Scotland, the UK’s Transport Research Laboratory’s (TRL) Dr Mike Winter, head of Ground Engineering and Regional Director, was able to provide a rapid response when he was called upon for advice. TRL has worked closely with Transport Scotland over the last decade undertaking research and offering independent expert opinion on the risks associated with the potential for landslides across Scotland. TRL’s opinion was particularly sought on strategies for re-op
  • December 15, 2015
    TRL wins eighth prestigious international road safety award
    The UK’s Transport Research Laboratory (TRL) has received its eighth Prince Michael International Road Safety Award for its work in improving road worker safety. The Prince Michael International Road Safety Awards recognise achievements in road safety and are presented to the most outstanding road safety initiatives across the world. TRL won the prestigious award for its research underpinning off side signs removal (OSSR), a signing technique for road works which has enabled elimination of live carriage
  • March 17, 2014
    Dynamic lane closures cuts time, cost and congestion on Motorway roadworks
    A combination of technologies is leading to major congestion and cost reductions during roadworks on the UK’s motorway network. Innovative construction programme scheduling technology and the deployment of moveable barriers has achieved substantial savings of money and time on UK motorway roadworks managed by the Highways Agency (HA). This combination has set the scene for a new generation of road usage analysis tools. The HA’s objective was to reduce the congestion caused by lane closures during roa
  • May 11, 2017
    Lindsay zips-up lane closure solution
    Moveable barrier systems are offering engineers a new traffic management options. Work zones - be they for maintenance or road widening - are a fact of life and when they occur on major highways, they create no end of problems for traffic planners and travellers alike.