Skip to main content

Underground sight

Innovative mobile radar technology that can detect subsurface problems is now being launched by surveying specialist Data Collection Limited. The system uses a specially designed vehicle to carry out surveys at normal traffic speeds. Ground-penetrating radar is used to generate a cross-sectional profile of the subsurface. This information can be used to assess road condition, helping with planning repairs and re-surfacing.
September 3, 2012 Read time: 2 mins
Travelling at highway speeds, this sophisticated survey package offers fast highway scanning

Innovative mobile radar technology that can detect subsurface problems is now being launched by surveying specialist Data Collection Limited. The system uses a specially designed vehicle to carry out surveys at normal traffic speeds. Ground-penetrating radar is used to generate a cross-sectional profile of the subsurface. This information can be used to assess road condition, helping with planning repairs and re-surfacing.

The ground penetrating radar (GPR) is fitted to a new electronic survey vehicle called ARAN2, which is also equipped with surface scanning systems and advanced technology to detect cracks down to 2mm in size. Unlike most conventional vehicles this allows surface and subsurface data to be collected at the same time.

The radar emits pulses of radio frequency energy into the road surface. With the transition of the pulses from one material to another, part of the energy echoes back to the surface and returning signals are processed to generate subsurface profiles. This equipment does away with the need for core sampling and means that survey data can be collected while travelling at normal traffic speeds. This GPR information maps layers to an accuracy of 5-10mm, and gives highway engineers a picture of road make-up and condition. On bridges, GPR is particularly useful for determining the location and thickness of concrete and asphalt layers, as well as reinforcing steel.

Related Content

  • Data collection key to software developments
    February 13, 2012
    The collection and handling of data are key technology drivers in the software sector. New methods of data collection and manipulation are driving significant developments in software at present. The latest technology allows designers and engineers to collect, store and manipulate ever larger amounts of data. Growing use of mobile field equipment for both data collection and field management is driving interactive systems. And in an interview this month Autodesk senior vice-president for the construction an
  • Airport runway rebuild at Bologna
    May 15, 2019
    Rebuilding a runway requires special attention to detail to maximise efficiency and safety Airport runways face special challenges with regard to the loads they carry on a daily basis, particularly when aircraft are landing. A modern jet aircraft will typically land at speeds of around 240-260km/h, with a laden 747 weighing as much as 265tonnes at the end of a long flight. The stresses these large aircraft place on runway surfaces are enormous and not just with the massive impact forces exerted during
  • Machine Control sector is the place for acquisitions
    January 22, 2014
    The machine control sector has been lively in recent months with a major acquisition, the unveiling of new software innovation and landmark testing of new technology to monitor paving temperature. Guy Woodford reports The state road construction authority in the German state of Saxony-Anhalt (LSBB Saxony-Anhalt) has become the first nationally to test MOBA’s new PAVE-IR Scan temperature measurement system at a works site.
  • Advances in concrete paving materials
    July 9, 2012
    Innovations in materials technology, as well as machines, could provide a major boost to the concrete paving sector - Mike Woof reports Development of new material technologies for the concrete paving sector continues apace and the latest innovations could provide the biggest boost for this market in many years. High performance cementitious material (HPCM) is an innovative concept that has been developed and tested for road surfacing applications as part of a project in which the UK's Transport Research La