Modern solutions for geodynamic monitoring and engineering surveys: precision instruments and innovative technologies to ensure safety and efficiency of oil and gas activities.
Our Mission At "EcoGeoMunayGaz," we strive for leadership in geodynamic safety of oil and gas fields by applying innovations and advanced technologies to protect the environment and promote sustainable industry development.
About Us "EcoGeoMunayGaz" is your reliable expert in comprehensive geodynamic monitoring and engineering research. We ensure the highest accuracy and reliability of data, guaranteeing the safety of oil and gas operations.
Our Experience Over the years, we have accumulated invaluable experience, successfully implementing projects at more than 50 oil and gas fields in Kazakhstan. Our company has made a significant contribution to the development of methodological guidelines and scientific-technical programs, raising the standards of geodynamic safety.
Our Achievements We are proud of our accomplishments and recognition at the level of state and international organizations. Our work affirms the status of "EcoGeoMunayGaz" as a leader in ensuring safety at oil and gas fields.
Our equipment
We also perform
Comprehensive Geodynamic Monitoring
Deformation Monitoring — This includes high-precision Class II leveling and high-precision GPS/GNSS measurements. These methods are aimed at tracking changes in surface deformation, which is critical for assessing the stability and safety of the area in the regions of field development.
High-Precision Gravimetric Surveys — Designed to measure changes in the Earth's gravitational field, which can indicate the movement of masses in underground structures, including the accumulation or removal of fluids and gases in rocks.
Seismological and Microseismic Monitoring — Involves continuous tracking of seismic activity to detect and analyze natural and induced earthquakes, helping to assess the risks associated with seismic activity on and around fields.
Radar Interferometry (InSAR) — A remote sensing technology that uses radar signals to create highly accurate maps of surface deformations. This method allows for monitoring surface changes over a wide range, including slopes, landslides, and other geodynamic processes.