1887
ASEG2012 - 22nd Geophysical Conference
  • ISSN: 2202-0586
  • E-ISSN:

Abstract

Summary

A ZTEM (Z-Tipper Axis Electromagnetic) helicopter AFMAG test survey was conducted in April, 2011, over the Gold Springs Project, in south eastern Nevada, for low sulphide epithermal gold exploration. Previous ground CSAMT surveys at Gold Springs revealed a positive correlation between the known epithermal gold systems and buried, subvertically-dipping resistivity high features that extend to depth. Synthetic forward modeling showed that ZTEM could also be successful, provided topographic effects were accounted for.

The ZTEM test results performed over the known epithermal gold prospect in southeastern Nevada appear to correlate very well with the CSAMT results and the known geology, in particular the presence of all the known epithermal centers over resistivity highs. Similar anomalies have been identified in previously unexplored areas of thicker overburden cover. 2D inversions of the airborne ZTEM, using a newly developed Avert2d code that accounts for bird clearance and 2d topography, appear to agree very well with the inversions obtained from ground CSAMT. These results provide encouragement for the application of ZTEM for epithermal gold deposits elsewhere in the district.

Loading

Article metrics loading...

/content/journals/10.1071/ASEG2012ab318
2012-12-01
2026-01-15
Loading full text...

Full text loading...

References

  1. De Lugao, P.P., and Wannamaker P., 1996, Calculating the two-dimensional magnetotelluric Jacobian in finite elements using reciprocity, Geophysical Journal International, 127, 806-810.
  2. Izarra, C., Legault, J.M., and Fontura, C., 2011, ZTEM airborne tipper AFMAG results over the Copaquire Porphyry, northern Chile, SBGF Conference Expanded Abstracts, 4pp.
  3. Labson, V. F., Becker A., Morrison, H. F., and Conti, U. , 1985, Geophysical exploration with audio frequency natural magnetic fields, Geophysics, 50, 656-664.
  4. Legault, J.M., Kumar H., Milicevic B., and Wannamaker P., 2009, ZTEM tipper AFMAG and 2D Inversion results over an unconformity uranium target in northern Saskatchewan, SEG Expanded Abstracts, 28, 1277-1281.
  5. Lo, B., and Zang, M., 2008. Numerical modeling of Z-TEM (airborne AFMAG) responses to guide exploration strategies, SEG Expanded Abstracts, 27, 1098-1101.
  6. Palacky, G.J., and West, G.F., 1988, Airborne electromagnetic methods, in “Electromagnetic Methods in Applied Geophysics, V. 2. Application”, edited by M.N. Nabighian, 811-879.
  7. Paré, P., and J. M. Legault, 2010, Ground IP-resistivity and airborne SPECTREM and helicopter ZTEM survey results over Pebble copper-moly-gold porphyry deposit, Alaska, SEG Expanded Abstracts, 1734-1738.
  8. Robertson, K., 2011, The 2009 Pozo Seco molybdenum-gold discovery, presented at KEGS Symposium, Toronto, CAN.
  9. Thomson, S., Fountain, D., and Watts, T., 2007, Airborne geophysics – evolution and revolution, in "Proceedings of Exploration 07: Fifth Decennial International Conference on Mineral Exploration", edited by B. Milkereit, 19-37
  10. Wannamaker, P. E., Stodt, J. A., and Rijo, L., 1987, A stable finite element solution for two-dimensional magnetotelluric modeling: Geophysical Journal of Royal Astronomical Society, 88, 277-296.
  11. Ward, S. H., 1959, AFMAG - Airborne and Ground: Geophysics, 24, 761-787.
  12. Williams, P.K., 1997, Towards a multidisciplinary integrated exploration process for gold discovery, In “Proceedings of Exploration 97: Fourth Decennial International Conference on Mineral Exploration” edited by A.G. Gubins, 1015–1028.
  13. Witherly, K., 2011, ZTEM for precious metals exploration: Extending the envelope, presented at PDAC-CAMESE Exhibitors Innovation Forum, Toronto, CAN.
  14. Zonge, K.L., and Hughes, L.J., 1988, Controlled source audiofrequency magnetotellurics, in “Electromagnetic Methods in Applied Geophysics, V. 2. Application”, edited by M.N. Nabighian, 713-807
/content/journals/10.1071/ASEG2012ab318
Loading
  • Article Type: Research Article
Keyword(s): AFMAG; airborne; electromagnetic; epithermal; gold; resistivity.; ZTEM
This is a required field
Please enter a valid email address
Approval was a Success
Invalid data
An Error Occurred
Approval was partially successful, following selected items could not be processed due to error