Title of article :
Application of fractal modeling to delineate alteration zones and lithological units in Masjed-Daghi Cu-Au porphyry deposit, NW Iran
Author/Authors :
Hezarkhani, A Department of Mining and Metallurgy Engineering - Amirkabir University of technology (Tehran Polytechnic) - Tehran, Iran , Nikoogoftar Safa, H
Abstract :
In this paper, we aim to present a quantitative modeling for delineating the alteration
zones and lithological units in the hypogene zone of Masjed-Daghi Cu-Au porphyry
deposit (NW Iran) based on the drill core data. The main goal of this work is to apply
Ordinary Kriging (OK) and concentration-volume (C-V) fractal model based on Cu
grades in order to separate the different alteration zones and lithological units. Initially,
anisotropy was investigated and modeled based on calculating the experimental semivariograms
of the Cu values, and the main variography directions were identified and
evaluated. Then a block model of the Cu grades was generated using the kriging, and the
estimation obtained for OK was applied to the C-V fractal model. The C–V log–log plot
based on the estimation method represents the various alteration and lithological zones
via threshold values. The comparison and interpretation of the alteration zones and
lithological units based on the C–V fractal modeling proved that the method was
acceptable and capable of correctly delineating the alteration and lithological units.
Regarding the correlation derived from log ratio matrix (used to compare the geological
model with the C-V fractal results), it was observed that Cu values less than 0.4% were
obtained for OK overlapped voxels with the phyllic alteration zone by an overall
accuracy (OA) of 0.737. The spatial correlation between the potassic alteration zones
resulting from a 3D geological modeling and the high concentration zones in the C-V
fractal model based on OK indicated that the alteration zone contained Cu values greater
than 0.4% with OA of 0.791. Also using this method, trustworthy results were obtained
for the rock units.
Keywords :
Alteration , Ordinary Kriging , Simple Kriging , Concentration-Volume , Masjed-Daghi , Copper Deposit
Journal title :
Astroparticle Physics