首页> 外文期刊>Nonlinear processes in geophysics >Application of concentration-volume fractal method in induced polarization and resistivity data interpretation for Cu-Mo porphyry deposits exploration, case study: Nowchun Cu-Mo deposit, SE Iran
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Application of concentration-volume fractal method in induced polarization and resistivity data interpretation for Cu-Mo porphyry deposits exploration, case study: Nowchun Cu-Mo deposit, SE Iran

机译:浓度-体积分形方法在Cu-Mo斑岩矿床勘探极化和电阻率数据解释中的应用,案例研究:伊朗东南部Nowchun Cu-Mo矿床

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The aim of this study is the utilization of the concentration-volume (iC-V/i) fractal method based on geoelectrical data including induced polarization (IP) and resistivity (RS) in targeting areas hosting different sulfidic mineralization zones in Nowchun Cu-Mo porphyry deposit, SE Iran. The iC-V/i fractal model employed in this research in order to separate high and moderate sulfidic zones from low sulfidic zone and barren wall rocks in the deposit is corresponding to chargeability and resistivity. Results obtained from the iC-V/i method indicate that there is a positive correlation between subsurface mineralization and sulfide mineralized zones; additionally, use of the iC-V/i method based on geophysical data is recognized as an accurate approach for delineation of various mineralization zones in the depth for optimization of mineral exploration operation, particularly in porphyry deposits.
机译:这项研究的目的是基于包括感应极化(IP)和电阻率(RS)在内的地电数据的浓度-体积(CV)分形方法在现今不同硫化物矿化区的目标区域中的利用伊朗东南部的铜钼斑岩矿床。为了将高,中硫带区与低硫带区和贫瘠的围岩区分开来,本研究采用的 C-V 分形模型对应于带电性和电阻率。从 C-V 方法获得的结果表明,地下矿化与硫化物矿化带之间存在正相关关系。此外,基于地球物理数据的 C-V 方法的使用被认为是勾勒深度内各种矿化区的最佳方法,以优化矿物勘探作业,特别是斑岩矿床。

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