PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

The application of electromagnetic methods for polymetallic prospecting in mining conditions

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper presents selected results of geophysical surveys carried out in the “Polkowice-Sieroszowice” copper mine in Lower Silesia, Poland. The aim of complex geophysical measurements was the analysis of the usefulness of selected electromagnetic methods for locating ore mineralisation zones in mining conditions. The results were obtained from surveys conducted along profiles designed on the side-wall by the roof, in the middle and the floor of the excavation. Electromagnetic Profiling and Ground Penetrating Radar techniques were applied for outlining the mineralisation zones consisting of Cu, Pb and Fe. The variability of geophysical recordings depending on the degree of mineralisation and distribution of fractures induced by mining activity were analysed. The results of geophysical surveys were correlated to petrophysical parameters and laboratory data concerning the percentages of Cu, Pb and Fe in samples taken from the side-wall at the survey site.
Słowa kluczowe
Wydawca
Rocznik
Strony
181--189
Opis fizyczny
Bibliogr. 21 poz., rys., wykr.
Twórcy
  • Krakow University of Technology, Faculty of Environmental Engineering, Department of Geotechnics; Krakow, Poland
autor
  • Silesian University, Faculty of Earth Sciences, Department of Applied Geology; Sosnowiec, Poland
autor
  • Silesian University, Faculty of Earth Sciences, Department of Applied Geology; Sosnowiec, Poland
autor
  • Silesian University, Faculty of Earth Sciences, Department of Applied Geology; Sosnowiec, Poland
Bibliografia
  • Agreement, 2011. Określenie możliwości zastosowania geofizycznych technik elektrycznych i elektromagnetycznych do lokalizacji stref okruszcowanych w ZG Polkowice-Sieroszowice – KGHM Polska Miedź S.A. Project of KGHM “Polska Miedź” no. KGHM-KP-U-0340-2011 [unpublished].
  • Annan A.P., 2001. Ground Penetrating Radar. Workshop Notes, Sensor and Software Inc., Canada.
  • Antonik W., 2013. Zastosowanie techniki GPR do wykrywania stref spękań i stref podwyższonej porowatości w warunkach kopalnianych. Przegląd Górniczy, 69, 3, 10–16.
  • Cook J.C., 1977. Borehole-radar exploration in a coal seam. Geophysics, 42, 1254–1257.
  • Francke J. & Yelf R.J., 2003, Applications of GPR for surface mining. [in:] Proceedings of the 2 nd International Workshop on Advanced Ground Penetrating Radar, 1207302, Delft University of Technology, Delft, 115–119.
  • Franke J., 2012. A review of selected ground penetrating radar applications to mineral resource evaluations. Journal of Applied Geophysics, 81, 29–37.
  • Gołębiowski T., 2012. Zastosowanie metody georadarowej do detekcji i monitoringu obiektów o stochastycznym rozkładzie w ośrodku geologicznym. Wydawnictwa AGH, Kraków.
  • Goszcz A. & Marcak H., 1986. Theoretical principles of the utilization of geoelectrical methods in coal mine and their application. Freiberg Forshungshafte, Berlin.
  • Gundelach V., Eisenburger D., Buschmann U., Behaimanot K. & Siever K., 2009. The direction sensitive borehole system DABoR and first results from a vertical borehole in salt. [in:] IWAGPR 2009: Proceedings of the 2009 5 th International Workshop on Advanced Ground Penetrating Radar, 27–29 May 2009, University of Granada, Granada, Spain, Electromagnetic Group of Granada.
  • Gyulai A., Dobróka M., Ormos T., Turai E. & Sasvári T., 2013. In-mine geoelectric investigations for detecting tectonic disturbances in coal seam structures. Acta Geophysica, 61, 5, 1184–1195.
  • Jol H.M., 2009. Ground Penetrating Radar – Theory and Applications. Elsevier Science, Amsterdam, The Netherlands.
  • Kotyrba A. & Kortas Ł., 2001. Zastosowanie refleksyjnej metody radarowej do rozpoznania genezy zagrożenia wodnego wyrobisk kopalni gipsu i anhydrytu „Nowy Ląd” w Niwnicach. Przegląd Górniczy, 57, 7–8, 20–26.
  • ReflexW Manual, 2015. SandmeierGeo, Karlsruhe, Germany.
  • Sharma P.V., 1997. An Introduction to Applied and Environmental Geophysics. Cambridge University Press, Cambridge.
  • Siever K. & Elsen R., 2010 Salt dome exploration by directional borehole radar wireline service. [in:] Proceedings of 13th International Conference on Ground Penetrating Radar, Lecce, Italy [on CD].
  • Turner G., Yelf R.J. & Hatherly P.J., 1989. Coal mining applications of ground radar. Exploration Geophysics, 20, 165–68.
  • Verma R.K. & Bhuin N.C., 1978. Use of electrical resistivity methods for study of coal seams in parts of the Jharia Coalfield, India. Geoexploration, 17, 163–176.
  • Vogt D., 2006. A borehole radar system for South African gold and platinum mines. South African Journal of Geology, 109, 521–552.
  • Vogt D., Van Schoor M. & Du Pisani P., 2005. The application of radar techniques for in-mine feature mapping in the Bushveld Complex of South Africa. The Journal of The South African Institute of Mining and Metallurgy, 105, 391–400.
  • Yilmaz O., 1994. Seismic Data Processing. SEG, Tulsa, Oklahoma, USA.
  • Żogała B., Mendecki M., Zuberek W., Gołębiowski T. & Antonik W., 2013. Determination of the Extent of Fractured Zones Around Mine Openings Using the Resistivity and GPR methods. [in:] Kwaśniewski M. & Łydżba D. (eds.), Eurock 2013: rock mechanics for resources, energy and environment: Wrocław, September 23–26, 2013, CRC Press, London, 181–186 [electronic document].
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-aa16a935-7e1b-475d-8db4-806fbd281ebc
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.