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Satellite image data has been used by government, commercial, industrial, civilian, and educational communities throughout the world. Perform spectral analysis for land cover use classifications and environmental impact changes.Consult on band combinations most appropriate to bring out the geographical and geological features that are most pertinent to your project.Incorporate the third-party USA and international GIS data.Provide 3D Digital Terrain Models and modeling for project planning and support.Process imagery, including orthorectification, DSM, DTM, and raster-to-vector conversions.Besides providing image data, Satellite Imaging Corporation performs many tasks in the background to ensure that we meet customer specifications and time schedules. If no satellite map data is available in the archives, new satellite image data can be acquired through a satellite tasking process. Geological Interpretation using ASTER, DEM and 8-Band MS WorldView-2 Imageryġ Meter DEM Pleiades-1A Triple Stereo Satellite Imagery - Bingham Canyon Copper MineĪSTER Mineral Mapping & Mineral Classification - Escondida Copper Mine, Chileįor many image requests, a matching image can be located in our global archives of satellite imagery. WorldView-3 SWIR Satellite Image - Mineral Alteration Mapping - Cuprite, Nevada If you have a particular mining or geologic project we would be happy to review your requirements and give you an estimate of what we can provide in support of your project. In addition, we work with trained geological consultants and can leverage their expertise to interpret the image data for several different mining and geological applications. Our imaging, Geographic Information System (GIS), Global Positioning System (GPS), and geodesy experts are highly experienced in image processing, orthorectification, georeferencing, feature extraction, and mosaicing for your specific project needs. Satellite Imaging Corporation (SIC) provides high-resolution satellite maps for analysis and mapping applications such as Geographic Information System (GIS). (Image Copyright © AIRBUS Defence & Space and processed by Satellite Imaging Corporation) All rights reserved.)īingham Canyon Copper Mine, Utah, USA - ArcScene 3D View (Image Copyright © AIRBUS Defence & Space. In this wavelength region, variations in quartz content appear as more or less red carbonate rocks are green, and mafic volcanic rocks are purple. The right image displays thermal infrared bands 13, 12, and 10 as RGB. For example, limestones are yellow-green, and purple areas are kaolinite-rich. In this wavelength region, clay, carbonate, and sulfate minerals have diagnostic absorption features, resulting in distinct colors on the image. The middle image displays short wavelength infrared bands 4, 6, and 8 as RGB. Rock colors may reflect the presence of iron minerals, and variations in albedo. Vegetation appears red, snow and dry salt lakes are white, and exposed rocks are brown, gray, yellow, and blue. In the example above, the left image displays visible and near-infrared bands 3, 2, and 1 in red, green, and blue (RGB). This data could be utilized by trained photogeologists to interpret surface lithologies, identify clays, oxides, and soil types from satellite imagery. Multispectral imaging and thematic mapping allow researchers to collect reflection data and absorption properties of soils, rock, and vegetation.
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Near-infrared, short wave infrared, and thermal infrared can be used to identify the difference in structural features of the earth's surface. Satellite images can also benefit geologists, scientists, and exploration managers due to the multiple bands that the satellites carry which allow them to interpret wavelengths that cannot be seen by the human eye. This processed and interpreted ASTER image used short wavelength, infrared bands, to highlight in bright pink the altered rocks in the Morenci pit associated with copper mineralization. The Morenci satellite image above is an open-pit copper mine in southeast Arizona that North America's leading producer of copper. Morenci Mine Mineral Mapping - Arizona, USA The satellite map data is also useful for mapping outcrops and regolith systematics and vegetation cover across exploration blocks and over regional areas. This is important for mapping out potential access corridors for exploration areas and considering the environmental impact af large project. Firstly, they provide geologists and field crews with the location of tracks, roads, fences, and inhabited areas. Satellite imagery and aerial photography have proven to be important tools in support of mineral exploration projects. GIS Maps, Geographic Information Systems.