Our approach transforms traditional 2D seismic data into comprehensive 3D models of the explored region. By integrating these models into a unified 3D data package, we enhance visualization, enabling more accurate interpretation of subsurface features and more informed decision-making during data analysis.
We utilize a proprietary parameterization algorithm developed in-house. Once data processing is complete, the system automatically reorganizes the output to generate a comprehensive 3D visualization model.
Our 3D seismic models enhance the efficiency and reliability of data interpretation. With over 30 years of experience, our specialists provide expert interpretation services that maximize the value of the 3D models we generate.
This pilot test was carried out on 44 seismic lines from the Campamento Este project. Noise attenuation filters were applied and corrections were made, significantly improving the imaging quality and resulting in a more uniform amplitude spectrum
This result has made it possible to generate, in a short period of time, a seismic volume in an area protected as a natural reserve, where the acquisition of 3D seismic data is currently not permitted. This methodology is highly valuable for interpretation phases, the application of seismic attributes, and the identification of exploratory opportunities.
This outcome has enabled the rapid generation of a seismic volume in a protected area designated as a natural reserve, where the acquisition of 3D seismic data is currently not feasible. This methodology proves highly valuable for interpretation phases, the application of seismic attributes, and the identification of exploratory opportunities.
The pilot test was conducted over an area of 200 km², encompassing 27 aquatic seismic lines. The objective was to evaluate the applicability of the methodology in an aquatic environment and assess its potential for generating seismic volumes in areas where conventional 3D data acquisition is restricted or not feasible
Noise attenuation filters were applied to the seismic lines of the Lago Mari Menuco project, resulting in a slight improvement in imaging quality and a more uniform amplitude spectrum.
This result has enabled the rapid generation of a seismic volume that reinforces the geological model by extending interpretations consistently across the area. It is a valuable tool for interpretation phases and the identification of exploratory opportunities.
Generation of 3D depth models of gravimetry, magnetometry and magneto telluric inversion.
Integration of 3D Magnetic Inversion with geophysical, geological or remote sensing information.
3D Magneto Telluric Inversion for geological and structural analysis and interpretation.
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