Abstract <p>Methods for comprehensively analyzing the results of satellite, gravimetric, and magnetometric surveys have been developed to localize ore-prospective sites in the Polar Urals within the nomenclature sheets R-42 and Q-42. The interpretation of multispectral satellite imagery data of medium (ASTER, Landsat) and high (Canopus-PSS, Resurs-P) resolution reveals linear, arc, and ring structural elements that control the localization of uranium-molybdenum and chromite-platinum mineralization in the Polar Urals. The interpretation of metasomatic altered rock zones in various IR spectral bands allows for the localization of areas for detailed works. Based on high-resolution satellite imagery, the large-scale structural-tectonic maps are prepared and detailed areas for ground verification are identified.</p>

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The Use of Satellite Survey Data from Resurs-P, Canopus-PSS, ASTER, and Landsat to Predict Uranium-Molybdenum and Chromite-Platinum Mineralization in the Polar Urals

  • G. A. Milovsky,
  • A. D. Aparin,
  • A. R. Ibragimov,
  • A. A. Kirsanov,
  • K. L. Lipiyainen

摘要

Abstract

Methods for comprehensively analyzing the results of satellite, gravimetric, and magnetometric surveys have been developed to localize ore-prospective sites in the Polar Urals within the nomenclature sheets R-42 and Q-42. The interpretation of multispectral satellite imagery data of medium (ASTER, Landsat) and high (Canopus-PSS, Resurs-P) resolution reveals linear, arc, and ring structural elements that control the localization of uranium-molybdenum and chromite-platinum mineralization in the Polar Urals. The interpretation of metasomatic altered rock zones in various IR spectral bands allows for the localization of areas for detailed works. Based on high-resolution satellite imagery, the large-scale structural-tectonic maps are prepared and detailed areas for ground verification are identified.