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Horizontal slice (depth 600-900м) of 3D GeoSEIS volumetric model of geodynamical zones at oil-gas bearing areas (NW Ukraine)

Horizontal slice (depth 600-900м) of 3D GeoSEIS volumetric model of geodynamical zones at oil-gas bearing areas (NW Ukraine) is created by 3D GeoSEIS Tomography processing decoding and transformation of satelite image, geophysical fields and geological maps. the colored symbols show commercial hydrocarbon deposit and occurrences.

 

Using 4D GeoSEIS software for multifactor volumetric (structural-geodynamic, geophysical, geochemical and mineralogical) modeling we offer:

 

Multifactor volumetric structural-geodynamic models “4D GeoSEISM” with exact ranging and forecasting of mineral deposits, low-amplitude tectonics, geophysical anomalies and geologic properties of deep structures, using volumetric interpretation methods of multispectral satellite images for cost-effective geological prospecting.

 

During 15 years the great number of volumetric structural-geodynamic, geological, geophysical models of ore deposits (Fe-Ti, Cu, Au, Hg, Ni-Cu-Co) and oil-gas deposits (Namibia, Kalimantan, Urals, Ukraine, Timor, Uzbekistan) are created.

 

Integration of the mineralogical and geochemical data, geophysical maps and multispectral satellite images (Hyperion, ASTER, LANDSAT-7ETM and others) in multifactor volumetric structural-geodynamic models.

 

4D GeoSEIS software for computer processing of the ASTER and Landsat7ETM images have been used to create the volumetric structural-geodynamic models of the NW Namibia & SE Angola territory to discriminate the high potential concentration of mineral resources based on limited field data in order to aid exploration for new copper and titaniferous magnetite mineralization. The strategy adopted to facilitate this predictive modeling is to develop understanding and testing of a “4D GeoSEIS Model” through research. They allowed calculating the potential resources of commercially important concentration of copper and titaniferous magnetite ores. Several points of Fe-Ti-Cu mineralization predicted by the 4D GeoSEISM had been confirmed by field observations.

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Uploaded on March 16, 2011
Taken on March 16, 2011