Real-Time Subsurface Geophysical Monitoring

This system is an advanced geo-resistivity meter designed for permanent installations that continuously monitor the subsurface in real time. It is used to detect and analyze the presence of moisture, water infiltration, and scouring at great depths. It helps resolve uncertainty regarding structural stability in critical areas, such as tailings dam walls and civil engineering projects.

Its main benefit is providing automated early warnings and online data visualization, enabling proactive risk management to ensure operational safety and environmental protection.

Lorem ipsum dolor sit amet, consectetur adipiscing elit. Suspendisse varius enim in eros elementum tristique. Duis cursus, mi quis viverra ornare, eros dolor interdum nulla, ut commodo diam libero vitae erat. Aenean faucibus nibh et justo cursus id rutrum lorem imperdiet. Nunc ut sem vitae risus tristique posuere.

Main Features

Advanced Multidimensional and High-Precision Measurement
It uses high-sensitivity sensors and cutting-edge technology to accurately capture complex physical events and structural health. It includes simultaneous monitoring across three spatial axes (3D and triaxial measurement).
Continuous Monitoring and Real-Time Dynamic Analysis
Process data from the field around the clock to instantly identify and quantify the evolution of instabilities, mechanical stresses, and deformations.
Automated Early Warning and Prevention Systems
Instantly identify critical variations, instability events, and breaches of preconfigured thresholds.
Wireless Connectivity and Long-Range Transmission
Optimize field data capture and transmission by eliminating complex wiring, utilizing modern network topologies and versatile connectivity with wireless nodes, robust long-range data transmission, and compatibility with networks such as LoRa or LoRaWAN.
Mining
Arrow down icon
  • Installation of geotechnical/geomechanical instrumentation.
  • 24/7/365 Monitoring Services.
  • Deformation Monitoring
    1. Settlement via high-precision digital leveling
    2. Convergence using advanced trigonometric methods
    3. MEMS technology for dynamic and settlement monitoring
  • Static and Dynamic Instrumentation Monitoring.
  • In-SAR Monitoring.
  • Radar Monitoring.
  • Comprehensive Monitoring Plan Engineering.
  • Geotechnical Monitoring Plan Design.
Civil
Arrow down icon
  • Installation of geotechnical/geomechanical instrumentation.
  • 24/7/365 Monitoring Services.
  • Deformation Monitoring
    1. Settlement via high-precision digital leveling
    2. Convergence using advanced trigonometric methods
    3. MEMS technology for dynamic and settlement monitoring
  • Static and Dynamic Instrumentation Monitoring.
  • In-SAR Monitoring.
  • Radar Monitoring.
  • Comprehensive Monitoring Plan Engineering.
  • Geotechnical Monitoring Plan Design.
Technological Innovation
Arrow down icon
  • Installation of geotechnical/geomechanical instrumentation.
  • 24/7/365 Monitoring Services.
  • Deformation Monitoring
    1. Settlement via high-precision digital leveling
    2. Convergence using advanced trigonometric methods
    3. MEMS technology for dynamic and settlement monitoring
  • Static and Dynamic Instrumentation Monitoring.
  • In-SAR Monitoring.
  • Radar Monitoring.
  • Comprehensive Monitoring Plan Engineering.
  • Geotechnical Monitoring Plan Design.
Comprehensive 24/7 monitoring
Arrow down icon
  • Installation of geotechnical/geomechanical instrumentation.
  • 24/7/365 Monitoring Services.
  • Deformation Monitoring
    1. Settlement via high-precision digital leveling
    2. Convergence using advanced trigonometric methods
    3. MEMS technology for dynamic and settlement monitoring
  • Static and Dynamic Instrumentation Monitoring.
  • In-SAR Monitoring.
  • Radar Monitoring.
  • Comprehensive Monitoring Plan Engineering.
  • Geotechnical Monitoring Plan Design.

Container Type

The core acquisition unit is housed in a rugged enclosure designed for permanent installation in mining and civil environments. It measures 204 mm wide, 426 mm long, and 293 mm high, with a weight of 15 kg. The structure is built to withstand operating temperatures ranging from -5 °C to +50 °C. To support autonomous operation in large-scale field installations, the system offers the option of integrating solar panels for charging and can be mounted on towable trailers.
Mining
Arrow down icon
  • Installation of geotechnical/geomechanical instrumentation.
  • 24/7/365 Monitoring Services.
  • Deformation Monitoring
    1. Settlement via high-precision digital leveling
    2. Convergence using advanced trigonometric methods
    3. MEMS technology for dynamic and settlement monitoring
  • Static and Dynamic Instrumentation Monitoring.
  • In-SAR Monitoring.
  • Radar Monitoring.
  • Comprehensive Monitoring Plan Engineering.
  • Geotechnical Monitoring Plan Design.
Civil
Arrow down icon
  • Installation of geotechnical/geomechanical instrumentation.
  • 24/7/365 Monitoring Services.
  • Deformation Monitoring
    1. Settlement via high-precision digital leveling
    2. Convergence using advanced trigonometric methods
    3. MEMS technology for dynamic and settlement monitoring
  • Static and Dynamic Instrumentation Monitoring.
  • In-SAR Monitoring.
  • Radar Monitoring.
  • Comprehensive Monitoring Plan Engineering.
  • Geotechnical Monitoring Plan Design.
Technological Innovation
Arrow down icon
  • Installation of geotechnical/geomechanical instrumentation.
  • 24/7/365 Monitoring Services.
  • Deformation Monitoring
    1. Settlement via high-precision digital leveling
    2. Convergence using advanced trigonometric methods
    3. MEMS technology for dynamic and settlement monitoring
  • Static and Dynamic Instrumentation Monitoring.
  • In-SAR Monitoring.
  • Radar Monitoring.
  • Comprehensive Monitoring Plan Engineering.
  • Geotechnical Monitoring Plan Design.
Comprehensive 24/7 monitoring
Arrow down icon
  • Installation of geotechnical/geomechanical instrumentation.
  • 24/7/365 Monitoring Services.
  • Deformation Monitoring
    1. Settlement via high-precision digital leveling
    2. Convergence using advanced trigonometric methods
    3. MEMS technology for dynamic and settlement monitoring
  • Static and Dynamic Instrumentation Monitoring.
  • In-SAR Monitoring.
  • Radar Monitoring.
  • Comprehensive Monitoring Plan Engineering.
  • Geotechnical Monitoring Plan Design.

Recommended Use

·        Mining: Ideal for the continuous monitoring of large areas and geological volumes, identifying risks in the rock mass in real time.

·        Tailings: Essential for the early detection and uninterrupted tracking of water seepage or moisture in tailings containment dams.

·        Civil Engineering: Allows for the validation of overall structural stability and monitors the success of compaction work against potential hidden erosion.

·        Geotechnics: Facilitates detailed terrain studies by measuring electrical changes over time (Time Lapse RT) to understand variations in soil properties.

·        Environment: Highly effective for detecting and identifying underground contaminant plumes, thereby improving environmental control.

Mining
Arrow down icon
  • Installation of geotechnical/geomechanical instrumentation.
  • 24/7/365 Monitoring Services.
  • Deformation Monitoring
    1. Settlement via high-precision digital leveling
    2. Convergence using advanced trigonometric methods
    3. MEMS technology for dynamic and settlement monitoring
  • Static and Dynamic Instrumentation Monitoring.
  • In-SAR Monitoring.
  • Radar Monitoring.
  • Comprehensive Monitoring Plan Engineering.
  • Geotechnical Monitoring Plan Design.
Civil
Arrow down icon
  • Installation of geotechnical/geomechanical instrumentation.
  • 24/7/365 Monitoring Services.
  • Deformation Monitoring
    1. Settlement via high-precision digital leveling
    2. Convergence using advanced trigonometric methods
    3. MEMS technology for dynamic and settlement monitoring
  • Static and Dynamic Instrumentation Monitoring.
  • In-SAR Monitoring.
  • Radar Monitoring.
  • Comprehensive Monitoring Plan Engineering.
  • Geotechnical Monitoring Plan Design.
Technological Innovation
Arrow down icon
  • Installation of geotechnical/geomechanical instrumentation.
  • 24/7/365 Monitoring Services.
  • Deformation Monitoring
    1. Settlement via high-precision digital leveling
    2. Convergence using advanced trigonometric methods
    3. MEMS technology for dynamic and settlement monitoring
  • Static and Dynamic Instrumentation Monitoring.
  • In-SAR Monitoring.
  • Radar Monitoring.
  • Comprehensive Monitoring Plan Engineering.
  • Geotechnical Monitoring Plan Design.
Comprehensive 24/7 monitoring
Arrow down icon
  • Installation of geotechnical/geomechanical instrumentation.
  • 24/7/365 Monitoring Services.
  • Deformation Monitoring
    1. Settlement via high-precision digital leveling
    2. Convergence using advanced trigonometric methods
    3. MEMS technology for dynamic and settlement monitoring
  • Static and Dynamic Instrumentation Monitoring.
  • In-SAR Monitoring.
  • Radar Monitoring.
  • Comprehensive Monitoring Plan Engineering.
  • Geotechnical Monitoring Plan Design.

T4G | 24/7 integrated monitoring platform

Our solution integrates seamlessly with various instruments, without the need to replace existing equipment.

Its design allows for quick and easy installation, requires no specialized tools, and optimizes time in any environment.
For more information

Do you have a project in mind?

Let's talk and find the best solution for your monitoring challenges.
More information
Specialized Consulting
High-Quality Equipment
Custom Solutions