利用电磁传感与感应极化技术找矿哈萨克北部铜钼矿

A. Belova, Y. Davydenko, D. Gurevich, A. Bashkeev, S. Bukhalov, P. Veeken
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引用次数: 1

摘要

地电技术被应用于识别与哈萨克斯坦商业矿床(铜钼矿)相对应的浅层地下(<1km)地质体。选择了电磁法和感应极化相结合的方法来圈定地下异常。电阻率和极化效应证明是诊断性的。工作流程包括以下步骤:电磁采集、质量控制和数据预处理、反演、解释和主成分分析。反演处理通过求解模拟麦克斯韦方程组的Cole-Cole公式的有限元法完成。一维反演结果作为三维反演的输入。主成分分析(n维聚类和距离加权)和复合地电参数计算提高了识别能力。EM异常呈圆形(热液注入特征)和/或拉长形状。断裂带和断层提供了管道/屏障并控制着热液过程。断层在一定程度上控制了分段IP异常的轮廓。根据EMS-IP数据,提出了3个浅层井位。其中两个钻孔显示出较高的极化现象:MN17中的铜钼金属矿和MN16中的黄铁矿富集。基于电磁异常的地质体映射提供了矿产资源体积和分布的补充信息。EMS-IP是一种高性价比的勘探工具,在地学项目中值得重视。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mineral Prospecting for Copper-Molybdene Ores in Northern Kazakhstan Using Electromagnetic Sensing and Induced Polarization Technology (EMS-IP)
Summary Geoelectric techniques are applied to identify geobodies in the shallow subsurface (<1km) that correspond to commercial ore deposits (copper-molybdene) in Kazakhstan. A combined CSEM and Induced Polarisation method is chosen to delineate anomalies in the underground. Resistivity and polarisation effects prove diagnostic. The workflow comprises steps like: EM acquisition, quality control and data preconditioning, inversion, interpretation and Principle Component Analysis. Inversion processing is done via a finite elements method solving the Cole-Cole formula simulating Maxwell’s equations. 1D inversion results serve as input for the 3D inversion. Principle Component Analysis (n-dimensional clustering and distance weighting) and computation of composite geoelectric parameters enhance the discrimination power. EM anomalies are circular (hydrothermal injection feature) and/or elongate in shape. Fracture zones and faults provide conduits/barriers and govern hydrothermal processes. Faulting in part controls the outline of the segmented IP anomalies. Three shallow well locations were proposed based on the EMS-IP data. Two of these boreholes demonstrate elevated polarisation phenomena: copper-molybdene metal ore in MN17 and pyrite enrichment in MN16. The mapped geobodies based on EM anomalies give complementary information on volume and distribution of the mineral resources. EMS-IP is a cost-effective investigation tool that deserves more attention in geoscience projects.
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