
Geophysics at the service of renewable energy
Clean energy projects require a deep understanding of natural conditions to ensure technical feasibility, environmental safety and resource optimization.
We combine technical expertise, innovation and strategic vision to transform geophysical data into engineering intelligence. We work from initial studies to installation and monitoring support, ensuring that decisions are made based on solid and reliable data.

Main methods applied
We work with a wide range of geophysical methods, chosen according to the needs of each project:
Sub-bottom Profiling (SBP)
Allows visualization of sedimentary layers and structures buried up to tens of meters below the seabed. Essential for assessing foundations, stability and interference.
Side Scan Sonar
Generation of high-resolution acoustic images of the bottom, allowing identification of obstacles, residues, submerged structures and sedimentary patterns.
Magnetometry
Used to detect variations in the magnetic field, identifying buried metal objects or specific geological structures.
Refraction and Reflection Seismic
Methods used for deeper mapping of geology, widely applied in areas of interest in complex excavations or foundations.
Gradiometry
An additional technique to magnetometry that allows measuring spatial variations in the magnetic field. It enables calculating the rate of change of the magnetic field between two nearby points, allowing more precise detection of buried metallic objects.
6. Georadar (GPR), Electrical Resistivity and others
For investigations in soil, coastal or transitional terrains, these methods provide complementary data on subsurface structures and layers.
For investigations in soil, coastal or transitional terrains, these methods provide complementary data on subsurface structures and layers.

Strategic Applications of Geophysical Survey

Geophysical Survey
What is Geophysical Survey?
Geophysical Survey is the set of techniques used to investigate the physical characteristics of the subsurface, both in the marine and terrestrial environment. Through the acquisition and interpretation of geophysical data, it is possible to map geological formations, identify geotechnical risks and support critical decisions for the planning and construction of large works.

Mitang: Fund knowledge to drive the future
Our difference
Team with experience in offshore and energy transition projects
State-of-the-art acquisition and processing technologies
Technical rigor in the interpretation and delivery of data
Integration with other disciplines (hydrography, geotechnics, positioning)
Integration with other disciplines (hydrography, geotechnics, positioning)