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Equipment and Services

EasyRad GPR is a portable multi-purpose scanning ground penetrating radar of sub-surface probing for the problems of engineering geology, hydrogeology, archeology, ecology, field engineering as well as for search and rescue operations.

description >>

GIS services.
Engineering-geological problems with the possibility of measuring not only on the surfaces of soil, buildings, installations, but also on board of air vehicles, ice and water.

  • Nondestructive diagnostic testing of the soil condition beneath the surface of urban areas, industrial sites and separate unique installations (evaluation of moisture of layers, detection and mapping of distribution of leakage water zones, assessment of flooding, detection of voids and the soil decompression).
  • Assessment of the condition of the subsurface structure of subsoil of dams, embankments, coast defenses, quays (evaluation of the moisture level of the soil layers, the degree of decompression).
  • Control over the condition of road surfaces, soil and fill under railway bed.
  • Assessment and diagnostic testing of the subsurface structure and the soil condition of landslides, mapping of the areas of their distribution as well as evaluation of their sustainability.
  • Mapping of contaminated soil, landfills of industrial and household wastes.
  • Mapping of the areas of distribution of liquid petroleum products (lenses) as a result of unauthorized leaks and accidents beneath the surface of industrial and technology-related areas.
  • Mapping of underground communication facilities (cables, pipelines and other underground facilities).
  • Identification of condition of foundations and building structure of existing installations.
  • Detection of non-homogeneity of the subsurface structure of soil, associated with archeological artifacts.
  • Area survey during field engineering and search and rescue operations.
  • Survey of water areas (identification of depth and profile of the bottom of rivers and lakes, thickness of the ice and snow, detection of submerged objects).
  • Search and identification of any metal and non-metal purposes, voids.
  • Delivery of the equipment complexes for subsurface probing: ground penetrating radars, magnetometers, gradiometers, anomaly detectors, electro/magnetic scanners, IR imagers, specialized metal detectors.
  • Staff training, consulting. Individual courses for training the GIS operators.

    Areas of application.
    1. Engineering.

    Mapping and Localization of:
  • gaps and defects in structure;
  • thickness of the coating, foundation, etc.;
  • valves, columns and other bearing structures;
  • thinning, deformation and other types of damage of coating, foundation, etc.;
  • built-in units components and systems in constructions and structures.
    Nondestructive research, assessment and monitoring of coatings, platforms, foundations, slabs, retaining and supporting structures as well as other structures.
    2. Communications.
    Mapping and Localization of:
  • buried and walled pipes, cables, channels, tunnels, etc.;
  • underwater pipes, cables, tunnels, etc.;
  • efflux in pipes (water, gas, etc.).
    Nondestructive research, assessment and monitoring of all kinds of communication.
    3. Transportation.
    Mapping and Localization of:
  • cracks, dip of earth masses, voids and other defects in the base and coating of roads, highways, railway tracks and other installations;
  • cracks, dip of earth masses and other defects in tunnels and tunnel constructions;
  • tinning, deformations, cracks, voids and other defects in bridges and bridge constructions.
    Nondestructive research, assessment and monitoring of roads, highways, railway tracks, tunnels, bridges and other structures.
    4. Environment.
    Mapping and Localization of:
  • leaks, spills and other pollutants spread;
  • buried, concreted and underwater hazardous wastes;
  • underground storage tanks of pollutants; protected natural sites.
    Nondestructive research, assessment and monitoring of condition of polluted areas, groundwater, reservoirs, storage of hazardous wastes and protected natural sites.
    5. Geotechnological.
    Mapping of:
  • bedrock;
  • sediments;
  • underwater sediments;
  • soils;
  • aquifers;
  • bottom of lakes and rivers;
  • karsts formations (cavities, etc.);
  • gatherings of earth masses, landslides.
    Research, assessment and monitoring of geological and hydrological conditions.
    6. Mining.
    Mapping and Localization of:
  • coal layers;
  • gold diggings;
  • salt pans;
  • deposits of bauxites;
  • hazardous areas in open pit mines and mine galleries.
    Research, assessment and monitoring of miming and hazardous areas.
    7. Military. Search and Rescue.
    Mapping and Localization of:
  • cables, pipelines, tunnels, communication; caverns, caves, bunkers, etc.;
  • anti-personnel and anti-tank mines;
  • unexploded shell;
  • defects in roads, highways, bridges, tunnels, bunkers, landfills, etc.;
  • scarps and counterscarps.
    8. Archeological.
    Mapping and Localization of:
  • cultural layers and archeological objects;
  • graves, tombs, tunnels, walls, foundations, furnaces and other artifacts.
    9. Judicial.
    Mapping and Localization of:
  • single and mass graves;
  • buries, concreted or otherwise hidden weapons, ammunition supplies, hazardous substances, etc.

    Some of the results obtained with the aid of the ground penetrating radar of the sub-surface probing.

    Radar image of the channel cross-section of a reservoir on the example of a small section of the profile of a radiogram:

    3D models built based on the results of probing of areas of underground tunnels:

    3D models built based on the results of probing of technology-related areas with underground communications:
    Insert into the pipe.

    3D model based on the results of sensing and geological anomalies:
    Karst cavities.

    3D models built based on the results of probing of complex high-rise building structures:

    3D animation model built based on the result of the ground penetrating radar probing of a water channel:


    Using GPR in archeology greatly simplifies the work of archaeologists and gives a lot of useful information.


    Photograph object after the archaeological excavations.

    Treasure hunters from different countries using our GPR and software Radmax 3D share their success (2018).

    Some of the results of the survey with the help of electrical devices.

    2D vertical profile revealed a hidden local cavity.

    3D profile with the local heterogeneity of technogenic character.

    Some of the results of a survey, obtained with the help of the anomalies detectors on the basis of magnetometers. The magnetic profiles of irregularities are shown.

    Underground stream on a cottage lot, creating significant advances of the surface layers of soil:

    Profile section registering the municipal sewage channel:

    A ruined and strewn well of 14 meters deep:

    A well of 22 meters deep:

    Side intro (inlet) burial in Scythian mound:

    Land of Old Russian mound:

    Remains of brickwork and a side predatory digging, signs of which could be seen even on the surface of the soil are clearly visible.

    The walled entrance to the dungeon (shooting from the side):

    and a profile section registering the same entrance (high-angle shoot):

    The surface of an upturned tank at a depth of 6.5 meters:

    Machines of the Second World War at different depths in the soil and under the water:

    Mapping of the large area of a cross-country terrain by scanning separate overlapping squares with the next segmentation of respected profiles:

    Some of the research results of archaeological artifacts with the aid of modern deep seated detector of metals.

    Modern devices for the deep metal prospecting allow to implement the probing with high resolution power in the range of depths from 0 to 8 meters, can process the results and give the operator a 3D diagram with the parameters of a researched object in a matter of seconds.

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